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ate of Carbonyl Carbon in the TCA Cycle

Fate of Carbonyl Carbon in the TCA Cycle

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Fate of Carbonyl Carbon in the TCA Cycle. Fate of Methyl Carbon in the TCA Cycle. Iron-Sulfur Co-factor. Supplement to Fig 17.12 (pg. 484). Succinate Dehydrogenase (SDH) and Fumarase (FH). Succinate Fumarate. Prolyl Hydroxylase. O 2. Electron Flow in Complex I. - PowerPoint PPT Presentation

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Page 1: Fate of Carbonyl Carbon in the TCA Cycle

Fate of Carbonyl Carbon in the TCA Cycle

Page 2: Fate of Carbonyl Carbon in the TCA Cycle

Fate of Methyl Carbon in the TCA Cycle

Page 3: Fate of Carbonyl Carbon in the TCA Cycle

Supplement to Fig 17.12 (pg. 484)

Iron-Sulfur Co-factor

Page 4: Fate of Carbonyl Carbon in the TCA Cycle
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Page 9: Fate of Carbonyl Carbon in the TCA Cycle

Succinate Dehydrogenase (SDH) and Fumarase (FH)

Page 10: Fate of Carbonyl Carbon in the TCA Cycle

ProlylHydroxylase

SuccinateFumarate

O2

Page 11: Fate of Carbonyl Carbon in the TCA Cycle
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Electron Flow in Complex I

Page 13: Fate of Carbonyl Carbon in the TCA Cycle

Electron Flow in Complex III

Page 14: Fate of Carbonyl Carbon in the TCA Cycle

Electron Flow in Complex IV

Page 15: Fate of Carbonyl Carbon in the TCA Cycle

Electron Flow in Complex II

Page 16: Fate of Carbonyl Carbon in the TCA Cycle
Page 17: Fate of Carbonyl Carbon in the TCA Cycle

Proton Pumps in Electron Transport

Fig. 18.17

Page 18: Fate of Carbonyl Carbon in the TCA Cycle
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ATP Synthase

Electron Micrograph

Page 20: Fate of Carbonyl Carbon in the TCA Cycle

C- Rings of ATP Synthetase

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Page 22: Fate of Carbonyl Carbon in the TCA Cycle

PET Scan with 18F-Deoxyglucose (FDG)