or Succinate Dehydrogenase. 2 succinates to 2 fumarates produce: _______ FADH₂ So starting with 1 six carbon glucose, up to this point a total of _____ATP 2____CO₂, _____GTP, and _____NADH have been produced.
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for Succinate Dehydrogenase. 2 succinates to 2 fumarates produce: _______ FADH₂
So starting with 1 six carbon glucose, up to this point a total of _____ATP 2____CO₂, _____GTP, and _____NADH have been produced.
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- Krebs cycle products/acetyl CoA molecule are 4 CO2, 3 NADH, 1 FADH2, 2 ATP 4 CO2, 6 NADH, 2 FADH2, 2 ATP 2 CO2, 3 NADH, 1 FADH2, 1 ATP 6 CO2, 6 NADH, 2 FADH2, 4 ATPIf decanoic acid (10 : 0) undergoes complete β-oxidation in mitochondria, how many net ATP is yielded? (NADH = 2.5 ATP; FADH2 = 1.5 ATP; Acetyl CoA = 10 ATP) Answer in number onlyRotenone is an insecticide that is not toxic to plants, but is highly toxic to fish and insects. (it will also kill mammals, but it doesn’t easily get into our cells). When Rotenone is added to cells in vitro, ATP production stops, oxygen is no longer reduced and NADH builds up. Based on these results, explain what is a possible mechanism of action for Rotenone?
- Succinate dehydrogenase generates which of the following high-energy Krebs cycle products? pyruvate glucose FADH2 NADH ATPWhich statement is FALSE? Cytochrome c2 transfers the electrons from QH2 to complex bc1 The proton gradient drives the synthesis of ATP through the action of ATP synthase Complex bc1 is homologous to Complex III of the respiratory electron-transport chain the cytochrome subunit of the reaction center must regain an electron to complete the cycle After the waste of a valuable high-energy electron the absorbed light energy can be converted into heatDo you need pyruvate dehydrogenase for oxidation of citrate to CO2 ? No, Yes? Please explain why. don't. copy from internet.i will get to know
- Choose the correct answer from the options in brackets. The [positive/negative] standard free‑energy change favors the oxidation of succinate by covalently‑bound FAD. This is consistent with K′eq [ >1 / =1 / <1 ]. Oxidation by NAD+ would require a large, [positive/negative] standard free‑energy change, with K′eq favoring the synthesis of succinate.Taking into consideration glycolysis, the pyruvate dehydrogenase complex and the citric acid cycle, how many NAD+ molecules are reduced from a single molecule of dihydroxyacetone phosphate? 4 NAD+ are reduced 5 NAD+ are reduced 8 NAD+ are reduced 10 NAD+ are reduced None of the above answers are correctAll the dehydrogenases of glycolysis and the citric acid cycle use NAD+ (?′°E′° for NAD+/NADH is −0.32 V−0.32 V) as electron acceptor except succinate dehydrogenase, which uses covalently‑bound FAD (?′°E′° for FAD/FADH2 in this enzyme is 0.050 V).0.050 V). The ?′°E′° value for fumarate/succinate is 0.031 V.0.031 V. a)Calculate the Δ?′°ΔG′° value for the oxidation of succinate using NAD+. b)Calculate the Δ?′°ΔG′° value for the oxidation of succinate using covalently‑bound FAD.
- Calculate production of NADH, FADH, and GTP molecul in complete oxidation often molecules of glucose by citric acid cycleLong explanations are NOT NEEDED. ATP accounting. Consider 1 molecule of the sucrose (monomeric units: glucose and fructose) that will undergo complete oxidation. a. Number of pyruvate molecules after glycolysis.b. Net ATP produced in glycolysis only (via substrate-level phosphorylation).c. Number of NADH produced using the pyruvate dehydrogenase complex reaction.d. Number of NADH and FADH2 produced from Krebs cycle.e. Net ATP produced (complete oxidation via Malate aspartate shuttle).NADH dehydrogenase 3 gene codes for a protein in the electron transport chain. Suppose that this protein is exposed to extremely high heat. What is likely to happen to this protein and why? (Be specific as to what will happen and why it will happen. Don't just say it will stop working; explain why.)