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Figure 17-24 Reaction mechanism of lactate dehydrogenase. Page 603
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Figure 17-25The two reactions of alcoholic fermentation. Page 604
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Figure 17-26Thiamine pyrophosphate. Page 604
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Figure 17-29The formation of the active ylid form of TPP in the pyruvate decarboxylase reaction. Page 606
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Figure 17-30 The reaction mechanism of alcohol dehydrogenase involves direct hydride transfer of the pro-R hydrogen of NADH to the re face of acetaldehyde. Page 606
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Table 17-2Some Effectors of the Nonequilibrium Enzymes of Glycolysis. Page 613
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Figure 17-32aX-Ray structure of PFK. (a) A ribbon diagram showing two subunits of the tetrameric E. coli protein. Page 614 Mg +2 ATP F6P
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Figure 17-33PFK activity versus F6P concentration. Page 615
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Figure 17-35Metabolism of fructose. Page 619
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Figure 17-36Metabolism of galactose. Page 621
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Figure 17-37Metabolism of mannose. Page 621
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Figure 17-31Schematic diagram of the plasmid constructed to control the amount of citrate synthase produced by E. coli. Page 609
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“Alfonse, Biochemistry makes my head hurt!!” \
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