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2-KPCC
Known as:
2-ketopropyl-coenzyme M oxidoreductase
National Institutes of Health
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Related topics
Related topics
1 relation
Broader (1)
Ketone Oxidoreductases
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2019
2019
The reactive form of a C–S bond–cleaving, CO2-fixing flavoenzyme
Bennett R. Streit
,
Jenna R. Mattice
,
G. Prussia
,
J. W. Peters
,
J. DuBois
Journal of Biological Chemistry
2019
Corpus ID: 59410840
NADPH:2-ketopropyl–coenzyme M oxidoreductase/carboxylase (2-KPCC) is a bacterial disulfide oxidoreductase (DSOR) that, uniquely…
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2011
2011
Roles of the Redox-Active Disulfide and Histidine Residues Forming a Catalytic Dyad in Reactions Catalyzed by 2-Ketopropyl Coenzyme M Oxidoreductase/Carboxylase
M. Kofoed
,
David A. Wampler
,
A. Pandey
,
J. W. Peters
,
S. Ensign
Journal of Bacteriology
2011
Corpus ID: 33492457
ABSTRACT NADPH:2-ketopropyl-coenzyme M oxidoreductase/carboxylase (2-KPCC), an atypical member of the disulfide oxidoreductase…
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2007
2007
Structure based mechanistic studies on 2-ketopropyl coenzyme M oxidoreductase / carboxylase from Xanthobacter autotrophicus and [FeFe] hydrogenase from Clostridium pasteurianum
A. Pandey
2007
Corpus ID: 81301735
X-ray crystallography was employed to probe the mechanism of the enzyme 2ketopropyl coenzymeM oxidoreductase / carboxylase (2…
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2002
2002
Structural basis for CO2 fixation by a novel member of the disulfide oxidoreductase family of enzymes, 2-ketopropyl-coenzyme M oxidoreductase/carboxylase.
B. Nocek
,
S. Jang
,
M. Jeong
,
D. D. Clark
,
S. Ensign
,
J. W. Peters
Biochemistry
2002
Corpus ID: 23919173
The NADPH:2-ketopropyl-coenzyme M oxidoreductase/carboxylase (2-KPCC) is the terminal enzyme in a metabolic pathway that results…
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2000
2000
Characterization of five catalytic activities associated with the NADPH:2-ketopropyl-coenzyme M [2-(2-ketopropylthio)ethanesulfonate] oxidoreductase/carboxylase of the Xanthobacter strain Py2 epoxide…
Daniel D. Clark
,
Jeffrey Allen
,
S. Ensign
Biochemistry
2000
Corpus ID: 26159874
The bacterial metabolism of propylene proceeds by epoxidation to epoxypropane followed by carboxylation to acetoacetate…
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