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Stereochemistry of the citric acid cycle

Journal of Chemical Education, 1970
A large percentage of biochemistry texts show the trans structure for aconitate but label it cis.
W. Grady Smith, J. Lyndal York
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Citric Acid Cycle

RCSB Protein Data Bank, 2012
Jayne M. Kalmar   +39 more
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Citric acid cycle biomimic on a carbon electrode

Biosensors and Bioelectronics, 2008
The citric acid cycle is one of the main metabolic pathways living cells utilize to completely oxidize biofuels to carbon dioxide and water. The overall goal of this research is to mimic the citric acid cycle at the carbon surface of an electrode in order to achieve complete oxidation of ethanol at a bioanode to increase biofuel cell energy density. In
Daria, Sokic-Lazic, Shelley D, Minteer
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The Krebs Citric Acid Cycle

2014
The citric acid cycle (CAC) has several functions in aerobic bacteria. Together with the pyruvate dehydrogenase multienzyme complex (PDHC), it completely oxidizes pyruvate and provides membrane-bound respiratory systems with reducing equivalents. An overview of the biochemistry and genetics of CAC enzymes in B. subtilis is presented in this chapter. B.
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The Citric Acid Cycle

1998
The citric acid cycle, together with the electron transport system, constitutes stage III of catabolism (see Figure 8.2), also called cellular respiration. Because the citric acid cycle functions in both catabolism (Figure 11.1) and anabolism (Figure 11.2), we call it an amphibolic pathway.
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Citric acid cycle as a “one-step” reaction

Journal of Theoretical Biology, 1988
One of the most familiar metabolic pathways is the citric acid cycle. This reaction sequence is characterized by intermediates which can be detected in aqueous solution. The recent success in isolating an enzyme cluster with five cycle activities suggests that the cyclic sequence should find a counterpart in a highly organized enzyme system for ...
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The Citric Acid Cycle and Fatty Acid Biosynthesis

2014
This chapter talks about fatty acid biosynthesis, linked to the citric acid cycle (CAC) through the utilization of acetyl-coenzyme A (CoA) as its starting point. The oxidative decarboxylation of pyruvate is an important reaction in archaea, bacteria, and eukaryotes alike, generating acetyl-CoA necessary for CAC reactions, fatty acid biosynthesis, and ...
David J. Kelly, Nicky J. Hughes
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