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GTP
3',5'-cyclic GMP + diphosphate
GTP
3',5'-cyclic-GMP + diphosphate
additional information
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GTP
3',5'-cyclic GMP + diphosphate
the receptor membrane-bound guanylate cyclase in the sperm tail triggers sperm chemotaxis, overview
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GTP
3',5'-cyclic GMP + diphosphate
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the receptor membrane-bound guanylate cyclase in the sperm tail triggers sperm chemotaxis, overview
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GTP
3',5'-cyclic GMP + diphosphate
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converts GTP into cGMP in many cell types upon green light stimulation whereas it is totally inactive in the dark
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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cGMP is involved in transmitting the NO activating signals to a variety of downstream effectors such as cyclicnucleotide-gated channels, protein kinases, and phosphodiesterases
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GTP
3',5'-cyclic GMP + diphosphate
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the guanylyl cyclase messenger system is potentially responsive to hormones/neurotranmitters that may control the degree of relaxation in this vascular tissue
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GTP
3',5'-cyclic GMP + diphosphate
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sGC activity plays an important role in a variety of aspects of the cardiovascular system, regulatory mechanisms, overview. sGC has an anti-proliferative effect on smooth muscle cells
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GTP
3',5'-cyclic GMP + diphosphate
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sGC produces cGMP, a second messenger required for normal vascular smooth muscle cell, VSMC, relaxation. Activating NADPH oxidase in bovine aortic VSMC increases ROS levels and induces oxidative posttranslational modification of Cys122, a beta1-subunit cysteinyl residue of the guanylate cyclase leading to its inhibition
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GTP
3',5'-cyclic GMP + diphosphate
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the enzyme is involved in regualtion of artery contaction, enzyme activation by NO leads to increased pulmonary artery relaxation
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GTP
3',5'-cyclic GMP + diphosphate
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the retinal isozyme retGC-1 influences transducin movement, not through its cyclase activity, but through direct interaction with Galphat protein, overview
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GTP
3',5'-cyclic GMP + diphosphate
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soluble guanylate cyclase is the mammalian receptor for nitric oxide
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GTP
3',5'-cyclic GMP + diphosphate
the enzyme acts as a receptor for the molt-inhibiting hormone
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GTP
3',5'-cyclic GMP + diphosphate
the receptor guanylyl cyclase acts as a molt-inhibiting hormone receptor and is a functional link to ecdysteroidogenesis, overview
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GTP
3',5'-cyclic GMP + diphosphate
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sGC activity plays an important role in a variety of aspects of the cardiovascular system, regulatory mechanisms, overview. sGC has an anti-proliferative effect on smooth muscle cells
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GTP
3',5'-cyclic GMP + diphosphate
the enzyme produces cGMP in response to green light with a light to dark activity ratio above 1000. After light excitation the putative signaling state forms. The membrane embedded protein converts GTP into cGMP in many cell types upon green light stimulation whereas it is totally inactive in the dark
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GTP
3',5'-cyclic GMP + diphosphate
the enzyme produces cGMP in response to green light with a light to dark activity ratio above 1000. After light excitation the putative signaling state forms. The membrane embedded protein converts GTP into cGMP in many cell types upon green light stimulation whereas it is totally inactive in the dark
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GTP
3',5'-cyclic GMP + diphosphate
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mechanism of NO stimulation of cGMP production in airway hyperreactivity pathogenesis evoked by toluene inhalation, overview
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GTP
3',5'-cyclic GMP + diphosphate
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NO is a major signaling molecule in the gastrointestinal tract, and released NO inhibits muscular contraction. The actions of NO are mediated by stimulation of NO-sensitive sGC and a subsequent increase in cGMP concentration
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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the enzyme has a role in neuronal degeneration
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
isozyme Gyc-89Da in neurons is necessary early in adult development to prevent eclosion, overview
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GTP
3',5'-cyclic GMP + diphosphate
isozyme Gyc-89Db in neurons is necessary early in adult development to prevent eclosion, overview
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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691340, 692206, 692546, 692585, 692704, 693102, 693364, 693365, 693784, 694977, 729139, 730028, 730957 -
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
guanylyl cyclase receptors synthesize the second-messenger cyclic GMP
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GTP
3',5'-cyclic GMP + diphosphate
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in the heart exists a coupled multienzymatic system for selective regulation of indirect, sGC-dependent versus direct, sGC-independent NO- and redox-related modulation of voltage-gated ion channel function in different myocyte types, mechanisms, overview
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GTP
3',5'-cyclic GMP + diphosphate
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nitric oxide and carbon monoxide are modulators of neurotransmission in cardiac ganglia and in neural control of the adult human heart
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GTP
3',5'-cyclic GMP + diphosphate
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sGC activity plays an important role in a variety of aspects of the cardiovascular system, regulatory mechanisms, overview. sGC has an anti-proliferative effect on smooth muscle cells
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GTP
3',5'-cyclic GMP + diphosphate
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sGC contributes to the pathology of pulmonary arterial hypertension, its stimulation reverses right heart hypertrophy and structural lung vascular remodelling, hemodynamics and vascular remodelling in lung explants, overview
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GTP
3',5'-cyclic GMP + diphosphate
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sGC is a receptor for nitric oxide generating cGMP
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GTP
3',5'-cyclic GMP + diphosphate
soluble guanylyl cyclase is a key protein in the NO/cGMP signaling pathway
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GTP
3',5'-cyclic GMP + diphosphate
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soluble guanylyl cyclase is the principal receptor for NO and plays a ubiquitous role in regulating cellular function, sGC governs smooth muscle tone and growth, vascular permeability, leukocyte flux, and platelet aggregation. Aberrant NO-sGC signaling is linked to diseases including hypertension, atherosclerosis, and stroke
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GTP
3',5'-cyclic GMP + diphosphate
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the enzyme and cGMP-pathway are involved in NO-mediated cell migration
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GTP
3',5'-cyclic GMP + diphosphate
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the enzyme is important in regulation of cardiaovascular functions and vision in humans, allosteric regulation, overview
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GTP
3',5'-cyclic GMP + diphosphate
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the membrane guanylate cyclase is part of a transduction machinery involving the guanylate cyclae, the guanylate cyclase activating protein type 1, S100B, and neurocalcin delta, mechanism, overview
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GTP
3',5'-cyclic GMP + diphosphate
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the NO-independent, heme-dependent soluble guanylate cyclase acts as an NO receptor
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GTP
3',5'-cyclic GMP + diphosphate
the retinal isozyme retGC-1 influences transducin movement, not through its cyclase activity, but through direct interaction with Galphat protein, overview
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GTP
3',5'-cyclic GMP + diphosphate
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von Willebrand factor/ristocetin-mediated activation of the sGC/cGMP signaling pathway may contribute to feedback platelet inhibition, regulation mechanisms, overview
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
the soluble guanylyl cyclase is the major receptor for NO and contributes to prolonged depolarization of the membrane potential in cerebral giant cells, overview
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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atrial natriuretic factor receptor guanylate cyclase GC-A is the receptor of the atrial natriuretic factor and the type B natriuretic peptide, overview
cyclic GMP is a second messenger in controlling blood pressure, cardiac vasculature, and fluid secretion
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GTP
3',5'-cyclic GMP + diphosphate
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GC-A acts as receptor for atrial natriuretic peptide that regulates arterial blood pressure and volume, overview
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GTP
3',5'-cyclic GMP + diphosphate
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guanylyl cyclase receptors synthesize the second-messenger cyclic GMP
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GTP
3',5'-cyclic GMP + diphosphate
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isozyme GC-A is a common receptor for atrial and brain natriuretic peptide
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GTP
3',5'-cyclic GMP + diphosphate
membrane forms of guanylyl cyclase serve as cell-surface receptors that synthesize the second messenger cGMP, which mediates diverse cellular processes. GC-G plays a role in mediating injury, GC-G may act as an early signaling molecule that promotes apoptotic and inflammatory responses in I/R-induced acute renal injury
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GTP
3',5'-cyclic GMP + diphosphate
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NO receptor isozymes NO-GC1 and NO-GC2 are required for long term potentiation in smooth muscle relaxation, they mediate vasorelaxation and platelet-inhibition of nitric oxide being the only NO receptor of the signalling pathway
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GTP
3',5'-cyclic GMP + diphosphate
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NO-GC plays a role in neuropathic pain. cGMP produced by NO-GC may activate signaling pathways different from cGMP-dependent protein kinase I, cGKI, during spinal nociceptive processing, whereas cGKI can be activated by natriuretic peptide receptor-B dependent cGMP production, overview
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GTP
3',5'-cyclic GMP + diphosphate
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role of sGCalpha1beta1 in nitrergic regulation of jejunal smooth muscle activity in male and female mice, overview
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GTP
3',5'-cyclic GMP + diphosphate
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sGC activity plays an important role in a variety of aspects of the cardiovascular system, regulatory mechanisms, overview. sGC has an anti-proliferative effect on smooth muscle cells
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GTP
3',5'-cyclic GMP + diphosphate
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sGC contributes to the pathology of pulmonary arterial hypertension, its stimulation reverses right heart hypertrophy and structural lung vascular remodelling, hemodynamics and vascular remodelling in a mouse lung model, overview
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GTP
3',5'-cyclic GMP + diphosphate
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soluble guanylyl cyclase contributes to ventilator-induced lung injury in mice, enzyme inhibition in lung increases the filtration coefficient, regulation, overview
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GTP
3',5'-cyclic GMP + diphosphate
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the enzyme is involved in vasorelaxation, NO acts as a signalling molecule regulating sGC expression in a negative feedback loop, overview
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GTP
3',5'-cyclic GMP + diphosphate
the homodimeric transmembrane guanylyl cyclase-A receptor produces cytoplasmic cyclic GMP from GTP on binding its extracellular ligands, atrial and B-type natriuretic peptides, which modulate blood pressure and volume through the stimulation of cyclic GMP production by their guanylyl cyclase-A receptor, overview. Alternative splicing can regulate endogenous ANP/GC-A signaling, overview
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GTP
3',5'-cyclic GMP + diphosphate
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the regulation of arterial vasodilatory and cardiac beta-adrenergic reserve by phosphodiesterase type 5-I targets cGMP from soluble GC stimulation
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GTP
3',5'-cyclic GMP + diphosphate
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the retina-specific guanylyl cyclases, retGC1 and retGC2 support synthesis of cGMP in photoreceptors
cyclic GMP serves as the second messenger in visual transduction, linking photon absorption by rhodopsin to the activity of ion channels
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GTP
3',5'-cyclic GMP + diphosphate
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the retinal isozyme retGC-1 influences transducin movement, not through its cyclase activity, but through direct interaction with Galphat protein, overview
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GTP
3',5'-cyclic GMP + diphosphate
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the soluble guanylate cyclase isoforms alpha1beta1 and alpha2beta1 are involved in the relaxation of distal colon by exogenous NO and by NANC nerve stimulation, mechanism, overview
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GTP
3',5'-cyclic GMP + diphosphate
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von Willebrand factor/ristocetin-mediated activation of the sGC/cGMP signaling pathway may contribute to feedback platelet inhibition, regulation mechanisms, overview
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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soluble guanylyl cyclase contributes to ventilator-induced lung injury in mice, enzyme inhibition in lung increases the filtration coefficient, regulation, overview
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GTP
3',5'-cyclic GMP + diphosphate
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the enzyme is involved in vasorelaxation, NO acts as a signalling molecule regulating sGC expression in a negative feedback loop, overview
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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cGMP levels in response to relaxant agonists are regulated in gastrointestinal smooth muscle by activation of phosphodiesterase 5 and inhibition of soluble guanylyl cyclase by c-Src-dependent phosphorylation in a feedback mechanism via the cGMP-dependent protein kinase, mechanism for attenuation of the NO/sGC/cGMP signal by Gi-coupled contractile agonists, overview
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GTP
3',5'-cyclic GMP + diphosphate
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sGC activity plays an important role in a variety of aspects of the cardiovascular system, regulatory mechanisms, overview. sGC has an anti-proliferative effect on smooth muscle cells
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GTP
3',5'-cyclic GMP + diphosphate
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the enzyme is involved in vasorelaxation, NO acts as a signalling molecule regulating sGC expression in a negative feedback loop, overview
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GTP
3',5'-cyclic GMP + diphosphate
sGC activity plays an important role in a variety of aspects of the cardiovascular system, regulatory mechanisms, overview. sGC has an anti-proliferative effect on smooth muscle cells
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GTP
3',5'-cyclic GMP + diphosphate
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the receptor membrane-bound guanylate cyclase in the sperm tail triggers sperm chemotaxis, overview
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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desensitization of the soluble guanylyl cyclase/cGMP pathway by lipopolysaccharide in rat isolated pulmonary artery but not aorta, leading to muscle relaxation
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GTP
3',5'-cyclic GMP + diphosphate
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physiological function of the enzyme in diabetes and obesity, overview
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GTP
3',5'-cyclic GMP + diphosphate
role of soluble guanylate cyclase during the inflammatory phase of postoperative illius, overview
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GTP
3',5'-cyclic GMP + diphosphate
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sGC activity plays an important role in a variety of aspects of the cardiovascular system, regulatory mechanisms, overview. sGC has an anti-proliferative effect on smooth muscle cells
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GTP
3',5'-cyclic GMP + diphosphate
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sGC contributes to the pathology of pulmonary arterial hypertension, its stimulation reverses right heart hypertrophy and structural lung vascular remodelling, hemodynamics and vascular remodelling in a rat lung model, overview
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GTP
3',5'-cyclic GMP + diphosphate
soluble guanylate cyclase is a key element in NO signaling, activation of sGC is an important mechanism of vascular collapse during septic shock
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GTP
3',5'-cyclic GMP + diphosphate
soluble guanylate cyclase is a key element in NO signaling, activation of sGC is an important mechanism of vascular collapse duringseptic shock
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GTP
3',5'-cyclic GMP + diphosphate
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the cGMP-dependent protein kinase negatively regulates sGC activity, phosphorylation at Ser64 desensitizes sGC and dampens NO signaling, overview
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
guanylyl cyclase-C is a peptide hormone receptor
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GTP
3',5'-cyclic GMP + diphosphate
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sGC activity plays an important role in a variety of aspects of the cardiovascular system, regulatory mechanisms, overview. sGC has an anti-proliferative effect on smooth muscle cells
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GTP
3',5'-cyclic GMP + diphosphate
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GTP
3',5'-cyclic GMP + diphosphate
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GTP is a chemorepellent in Tetrahymena thermophila that stimulates cell division as well as ciliary reversal. Protein kinase C activy is not required for GTP signaling
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GTP
3',5'-cyclic GMP + diphosphate
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GTP is a chemorepellent in Tetrahymena thermophila that stimulates cell division as well as ciliary reversal. Protein kinase C activy is not required for GTP signaling
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GTP
3',5'-cyclic-GMP + diphosphate
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GTP
3',5'-cyclic-GMP + diphosphate
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GTP
3',5'-cyclic-GMP + diphosphate
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GTP
3',5'-cyclic-GMP + diphosphate
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GTP
3',5'-cyclic-GMP + diphosphate
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GTP
3',5'-cyclic-GMP + diphosphate
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GTP
3',5'-cyclic-GMP + diphosphate
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GTP
3',5'-cyclic-GMP + diphosphate
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GTP
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additional information
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heme oxygenase-1 induction depletes heme and attenuates pulmonary artery relaxation and guanylate cyclase activation by nitric oxide
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additional information
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sGC role in vascular system diseases and failures, overview
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additional information
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sGC role in vascular system diseases and failures, overview
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additional information
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soluble guanylyl cyclase sGC provides the major guanylyl cyclase activity in Dictyostelium, contributing about 90% of the chemoattractant-induced cGMP response
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additional information
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association of CT dinucleotide repeat polymorphism in the 5'-flanking region of the guanylyl cyclase A gene with essential hypertension in the Japanese, overview
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additional information
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inhibition of non-small cell lung cancer cell migration by grape seed proanthocyanidins is mediated through the inhibition of nitric oxide, guanylate cyclase, and ERK1/2, overview
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additional information
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isozyme GC-A mediates the endocrine effects of atrial and B-type natriuretic peptides regulating arterial blood pressure and volume homeostasis and also local antihypertrophic and antifibrotic actions in the heart, overview
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additional information
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isozyme GC-A mediates the endocrine effects of atrial and B-type natriuretic peptides regulating arterial blood pressure and volume homeostasis and also local antihypertrophic and antifibrotic actions in the heart, overview
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additional information
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isozyme GC-A mediates the endocrine effects of atrial and B-type natriuretic peptides regulating arterial blood pressure and volume homeostasis and also local antihypertrophic and antifibrotic actions in the heart, overview
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additional information
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isozyme GC-A mediates the endocrine effects of atrial and B-type natriuretic peptides regulating arterial blood pressure and volume homeostasis and also local antihypertrophic and antifibrotic actions in the heart, overview
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additional information
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isozyme GC-A mediates the endocrine effects of atrial and B-type natriuretic peptides regulating arterial blood pressure and volume homeostasis and also local antihypertrophic and antifibrotic actions in the heart, overview
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additional information
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isozyme GC-B, the specific receptor for C-type natriuretic peptide, has a critical role in endochondral ossification, overview
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additional information
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isozyme GC-B, the specific receptor for C-type natriuretic peptide, has a critical role in endochondral ossification, overview
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additional information
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isozyme GC-B, the specific receptor for C-type natriuretic peptide, has a critical role in endochondral ossification, overview
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additional information
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isozyme GC-B, the specific receptor for C-type natriuretic peptide, has a critical role in endochondral ossification, overview
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additional information
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isozyme GC-B, the specific receptor for C-type natriuretic peptide, has a critical role in endochondral ossification, overview
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additional information
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isozyme GC-C mediates the effects of guanylin and uroguanylin on intestinal electrolyte and water transport and epithelial cell growth and differentiation, overview
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additional information
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isozyme GC-C mediates the effects of guanylin and uroguanylin on intestinal electrolyte and water transport and epithelial cell growth and differentiation, overview
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additional information
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isozyme GC-C mediates the effects of guanylin and uroguanylin on intestinal electrolyte and water transport and epithelial cell growth and differentiation, overview
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additional information
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isozyme GC-C mediates the effects of guanylin and uroguanylin on intestinal electrolyte and water transport and epithelial cell growth and differentiation, overview
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additional information
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isozyme GC-C mediates the effects of guanylin and uroguanylin on intestinal electrolyte and water transport and epithelial cell growth and differentiation, overview
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additional information
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isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction, overview
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additional information
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isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction, overview
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additional information
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isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction, overview
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additional information
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isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction, overview
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additional information
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isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction, overview
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additional information
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Isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction. Isozymes GC-D and GC-G appear to be pseudogenes in the human, role of alterations of these ligand/receptor systems in human diseases, overview
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additional information
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Isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction. Isozymes GC-D and GC-G appear to be pseudogenes in the human, role of alterations of these ligand/receptor systems in human diseases, overview
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additional information
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Isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction. Isozymes GC-D and GC-G appear to be pseudogenes in the human, role of alterations of these ligand/receptor systems in human diseases, overview
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additional information
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Isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction. Isozymes GC-D and GC-G appear to be pseudogenes in the human, role of alterations of these ligand/receptor systems in human diseases, overview
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Isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction. Isozymes GC-D and GC-G appear to be pseudogenes in the human, role of alterations of these ligand/receptor systems in human diseases, overview
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sGC mediates the NO-induced aqueous humor secretion and increased outflow facility from the eye
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sGC role in vascular system diseases and failures, overview
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splicing is a method of sGC regulation, direct regulation of guanylyl cyclase by dominant-negative splice variants. alpha1 Soluble guanylyl cyclase splice forms act as regulators of human sGC activity, overview
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splicing is a method of sGC regulation, direct regulation of guanylyl cyclase by dominant-negative splice variants. alpha1 Soluble guanylyl cyclase splice forms act as regulators of human sGC activity, overview
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the NO/sGC/cGMP signaling cascade is not critically involved in ODQ-induced neurite remodeling, overview
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ATP-dependent mode of ANF-RGC signal transduction mechanism, overview
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inhibition of soluble guanylate cyclase abolishes the potentiating effect of Mn2+ on MAP kinase phosphorylation, NF-kappaB activation, and production of NO
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isozyme GC-A mediates the endocrine effects of atrial and B-type natriuretic peptides regulating arterial blood pressure and volume homeostasis and also local antihypertrophic and antifibrotic actions in the heart. Isozyme GC-B, the specific receptor for C-type natriuretic peptide, has a critical role in endochondral ossification. Isozyme GC-C mediates the effects of guanylin and uroguanylin on intestinal electrolyte and water transport and epithelial cell growth and differentiation. Isozymes GC-E and GC-F are colocalized within the same photoreceptor cells of the retina and have an important role in phototransduction. Isozyme GC-D has chemosensory functions in the olfactory neuroepithelium
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modeling of the intracellular signal transduction for CO2 detection by GC-D+ neurons and the molecular mechanism of bicarbonate sensing by GC-D, overview
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sGC role in vascular system diseases and failures, overview
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soluble guanylyl cyclase alpha1/alpha2 subunits are involved in the relaxant effect of CO and CORM-2, i.e. CO-releasing molecule-2, on enteric smooth muscle, overview
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sustained soluble guanylate cyclase stimulation offsets nitric-oxide synthase inhibition to restore acute cardiac modulation by sildenafil, overview
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the atrial natriuretic peptide/GC-A/cGMP-dependent protein kinase I system stimulates the phosphorylation of VASP in cultured microvascular endothelial cells
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inhibition of soluble guanylate cyclase abolishes the potentiating effect of Mn2+ on MAP kinase phosphorylation, NF-kappaB activation, and production of NO
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sGC role in vascular system diseases and failures, overview
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sGC role in vascular system diseases and failures, overview
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guanylate cyclase inhibitor LY-83583 completely blocks high frequency stimuli at 20 Hz/20 s-induced ganglionic long-term potentiation, gLTP, in superior cervical ganglia isolated from control rats, overview
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guanylyl cyclase and protein kinase G mediate nitric oxide suppression of 5-lipoxygenase metabolism in rat alveolar macrophages, regulation mechanisms, overview
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hypertension is related to reduced cGMP levels, spontaneously hypertensive rats shows reduced sGC levels, overview, sGC role in vascular system diseases and failures, overview
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sGC mediates the NO-induced aqueous humor secretion and increased outflow facility from the eye
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sGC role in vascular system diseases and failures, overview
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in vivo mechanism of GTP avoidance, overview
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in vivo mechanism of GTP avoidance, overview
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