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Results 1 - 10 of 12 > >>
EC Number General Information Commentary Reference
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60malfunction the ubiF mutant shows poor growth on glucose and no growth on succinate, the ubiF mutant accumulates 2-octaprenyl-3-methyl-6-methoxy-1,4-benzoquinone 727539
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60physiological function a plasmid encoding CLK-1 supports aerobic respiration on a nonfermentable carbon source of the Escherichia coli ubiF mutant strain and rescues the ability to synthesize ubiquinone -, 747760
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60physiological function COQ7-deficient mouse embryos fail to survive beyond embryonic day 10.5, exhibit small-sized body and delayed embryogenesis. COQ7-deficient neuroepithelial cells fail to show the radial arrangement in the developing cerebral wall, aborting neurogenesis at E10.5. The enlarged mitochondria with vesicular cristae and enlarged lysosomes fill with disrupted membranes, which is consistent with mitochondriopathy. COQ7-deficient embryos fail to synthesize CoQ9, but instead yield demethoxyubiquinone 9 746957
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60physiological function deletion of the chromosomal Coq7 gene generates respiration defective yeast mutants deficient in ubiquinone. Coq mutants accumulate an early intermediate in the ubiquinone biosynthetic pathway, 3-hexaprenyl-4-hydroxybenzoate 748142
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60physiological function enzyme is directly involved in ubiquinone biosynthesis. The defect in gluconeogenic gene activation in Coq7/Cat5 null mutants is a general consequence of a defect in respiration 748155
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60physiological function mutation lacking UbiF activity accumulate 2-octaprenyl-3-methyl-6-methoxy-1,4-benzoquinone 748057
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60physiological function promoter-driven COQ7/CLK-1 expression providing low levels of transgene expression rescues COQ7-deficient mice from embryonic lethality. The mice show a concomitant decrease in CoQ9, mitochondrial respiratory enzyme activity and the generation of reactive oxygen species in the mitochondria 746696
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60physiological function the enzyme catalyzes a reaction in the ubiquinone biosynthesis pathway 727539
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60physiological function the Escherichia coli UbiF gene expressed at low copy restores growth of Coq7 point mutant E194K on medium containing a non-fermentable carbon source, but fails to rescue a coq7 null mutant. Expression of UbiF from a multicopy vector restores growth and coenzyme Q synthesis for both mutants, although with a higher efficiency in the point mutant. Addition of coenzyme Q to the growth media also stabilizes the Coq3 and Coq4 polypeptides in the coq7 null mutant 748160
Show all pathways known for 1.14.99.60Display the word mapDisplay the reaction diagram Show all sequences 1.14.99.60physiological function the gene complements an Escherichia coli mutant that lacks 5-demethoxyubiquinone hydroxylase UbiF 748149
Results 1 - 10 of 12 > >>