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EC Number
BRENDA No.
Title
Journal
Volume
Pages
Year
Organism
PubMed ID
6.4.1.1
745859
A distinct holoenzyme organization for two-subunit pyruvate carboxylase
Nat. Commun.
7
12713
2016
Pseudomonas aeruginosa
27708276
6.4.1.1
745859
A distinct holoenzyme organization for two-subunit pyruvate carboxylase
Nat. Commun.
7
12713
2016
Methylobacillus flagellatus
27708276
6.4.1.1
745859
A distinct holoenzyme organization for two-subunit pyruvate carboxylase
Nat. Commun.
7
12713
2016
Methylobacillus flagellatus DSM 6875
27708276
6.4.1.1
745792
Control of biotin biosynthesis in mycobacteria by a pyruvate carboxylase dependent metabolic signal
Mol. Microbiol.
106
1018-1031
2017
Mycolicibacterium smegmatis
29052269
6.4.1.1
745792
Control of biotin biosynthesis in mycobacteria by a pyruvate carboxylase dependent metabolic signal
Mol. Microbiol.
106
1018-1031
2017
Mycolicibacterium smegmatis ATCC 700084
29052269
6.4.1.1
746512
Functional conformations for pyruvate carboxylase during catalysis explored by cryoelectron microscopy
Structure
22
911-922
2014
Staphylococcus aureus
24882745
6.4.1.1
746512
Functional conformations for pyruvate carboxylase during catalysis explored by cryoelectron microscopy
Structure
22
911-922
2014
Staphylococcus aureus ATCC 700699
24882745
6.4.1.1
744355
Investigation of the roles of allosteric domain arginine, aspartate, and glutamate residues of Rhizobium etli pyruvate carboxylase in relation to its activation by acetyl CoA
Biochemistry
55
4220-4228
2016
Rhizobium etli
27379711
6.4.1.1
744355
Investigation of the roles of allosteric domain arginine, aspartate, and glutamate residues of Rhizobium etli pyruvate carboxylase in relation to its activation by acetyl CoA
Biochemistry
55
4220-4228
2016
Rhizobium etli ATCC 51251
27379711
6.4.1.1
744366
Kinetic and thermodynamic analysis of acetyl-CoA activation of Staphylococcus aureus pyruvate carboxylase
Biochemistry
56
3492-3506
2017
Staphylococcus aureus
28617592
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