CO- COO Succinate dehydrogenase CH2 + FAD CH2 C-H + FADH2 H-C COO COO- Succinate Fumarate 17. This enzymatic reaction is usually involved in what part of a cell? A. Mitochondrion B. Cytoplasm C. Nucleus D. Cell membrane E. All are possible sites

Biochemistry
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ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Publisher:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Chapter1: Biochemistry: An Evolving Science
Section: Chapter Questions
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CO-
COO
Succinate
dehydrogenase
CH2
+ FAD
CH2
C-H
+ FADH2
H-C
CO-
C-
Succinate
Fumarate
17. This enzymatic reaction is usually involved in what part of a cell?
A. Mitochondrion
B. Cytoplasm
C. Nucleus
D. Cell membrane
E. All are possible sites
18. With this information, succinate dehydrogenase converts fumarate to succinate via what possible reaction mechanism?
A. Nucleophilic addition
B. Electrophilic addition
C. Radical substitution
D. Oxidation-reduction
E. None of the options
19. Based on this enzymatic reaction, FAD is technically classified as
A. Oxidizing agent
B. Reducing agent
C. Proton donor
D. Proton acceptor
E. None of the options
Transcribed Image Text:CO- COO Succinate dehydrogenase CH2 + FAD CH2 C-H + FADH2 H-C CO- C- Succinate Fumarate 17. This enzymatic reaction is usually involved in what part of a cell? A. Mitochondrion B. Cytoplasm C. Nucleus D. Cell membrane E. All are possible sites 18. With this information, succinate dehydrogenase converts fumarate to succinate via what possible reaction mechanism? A. Nucleophilic addition B. Electrophilic addition C. Radical substitution D. Oxidation-reduction E. None of the options 19. Based on this enzymatic reaction, FAD is technically classified as A. Oxidizing agent B. Reducing agent C. Proton donor D. Proton acceptor E. None of the options
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