The number of ATP molecules that can be made from the oxidation of cis-11-pentatadecenoic acid (C-15) to Co, and water (NADH = 3 ATP and FADH, = 2 ATP) is: Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer. a 120 b. 110 112 d 122 105 f 121 100 119 103
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- Can you please pick the right answer in each parentheses? Glucose synthesis can derive carbons from a variety of sources including ["fatty acids", "glycerol"], ["cholesterol", "amino acids"], ["lactate", "NADH"], and ["oxidative phosphorylation", "carbon dioxide, photosynthesis"]Can you please pick the right answer in each parentheses? The pentose phosphate pathway provides a number of critical functions including ["production of ribose-5-phosphate", "production of NADH"] that is vital for ["synthesis of nucleotides and coenzymes", "oxidative phosphorylation"] . This pathway is divided into oxidative and non-oxidative steps. The latter steps ["are involved in the conversion of various sugar phopshates, so called ["carbon shuffle reactions"", "are directly involved in NADPH production"] . If ["NADP+", "NAD+"] levels are high, flux through the pentose phosphate pathway is promoted by allosteric regulation of glucose-6-phosphate dehydrogenase. If reducing equivalents derived form the pentose phosphate pathway are high, glucose-6-phosphate is directed toward ["a phosphatase and then export from the cell", "glycolysis"] .Can you please pick the right answer in each parentheses? NADH and NADPH provide important reducing and bond building capabilities. NADPH production occurs in ["pentose phosphate pathway", "glycolysis"] and ["photosynthesis", "fatty acid breakdown"] and provides important biosynthetic capabilities, including ["reduction steps of the Calvin cycle", "steps in gluconeogenesis"]. NADPH also serves an important role in red blood cells, reducing ["glutathione dimers to monomers", "flavin adenine dinucleotide (oxidized form)"] so that is can eliminate reactive molecules, such as ["hydrogen peroxide", "H+, hydrogen ion"] from damaging cellular components.
- NADH is more____ than NAD+, which means it has ____ energy. When NAD+ is converted to NADH, it is____, and when NADH is converted to NAD+ it is_____ . *Please use the answer key options in the attached image below.If 10 molecules of NADH are oxidized during oxidative phosphorylation, how many molecules of ATP are synthesized? Your answer should be a numerical input. Which of the following catalyzes the reduction of oxygen by using the electrons released from oxidizing coenzyme Q to reduce cytochrome c? NADH dehydrogenase Succinate dehydrogenase Cytochrome c reductase Cytochrome c oxidase Question 18 1 Point During glycolysis, the energy-investment phase occurs in the cytosol while the energy payoff phase occurs in the mitochondrial matrix. True FalseFor each of the four possibilities listed below (a through d), only one answer is correct and the others are false. Identify the correct statement and explain why the others are false. In your answer, write CORRECT next to the statement that you think is true, and ONLY for the ones that you think are false, explain what is wrong with the statement . When glucose reacts with ATP to form glucose-6-phosphate (as shown on the figure below): 1. The synthesis of glucose-6-phosphate is exergonic 2. ADP is at a higher energy level than ATP 3. Glucose-6-phosphate is at a higher energy level than glucose 4. Because ATP donates a phosphate to glucose, this is not a coupled reaction
- The energy stored in one molecule of NADH is used to synthesize how many molecules of ATP?Aerobic respiration, used by the mitochondria of eukaryotic cells, is best represented by which of the following balanced equations? 6CO2 + 12H2S g C6H12O6 + 6S2 + 6H2O C6H12O6 + 6O2 + 6H2O g 6CO2 + 12H2O C12H22O11 + H2O g C6H12O6 + C6H12O6 6CO2 + 12H2O g C6H12O6 + 6O2 + 6H2O C6H12O6 + C6H12O6 g C12H22O11 + H2OWhich of the following is the preferred fuel source under anaerobic conditions? Group of answer choices amino acids glucose fatty acids lactate Which of the following tissues would be the BEST choice to study if you wanted to perform experiments studying how energy from food is extracted in the citric acid cycle? Group of answer choices liver red blood cells muscle containing lots of mitochondria a tumor Which of the following best describes CoA? Group of answer choices catalytic coenzyme glycolytic enzyme stoichiometric coenzyme building block of fatty acids
- The following question focuses on how the parameters regulating enzyme function might change, and how these might appear graphically on a Michaelis-Menten plot and a Lineweaver-Burke plot. Carbonic anhydrase is an enzyme that will convert CO2 and water into HCO3. CO2 + H20 > H+ + HCO3 There are many different isoforms of this enzyme. (see for instance http://en.wikipedia.org/wiki/Carbonic_anhydrase 1 Assume that one variant has a Km of 10 µM and a different variant has a Km of 100 µM. Draw on the same graph a typical Michaelis-Menton plot showing the alteration in the rate of carbonic anhydrase as the CO2 level is varied for the two different variants of enzyme, assuming the concentration of the enzyme (10 mM) in the test tube is kept constant. Assume that you have equal amounts of the two different variants of carbonic anhydrase in a number of test tubes and that the Vmax for both enzymes are the same. Be sure to label the axes. For the same conditions as above, draw a…Select the correct answer from the answers provided. The FADH2 formed during the Krebs cycle enters the electron transport system at which site? a. NADH dehydrogenase c. complex IV b. complex II d. ATP synthaseThe following question focuses on how the parameters regulating enzyme function might change, and how these might appear graphically on a Michaelis-Menten plot and a Lineweaver-Burke plot. Carbonic anhydrase is an enzyme that will convert CO2 and water into HCO3. CO2 + H20 > H+ + HCO3 There are many different isoforms of this enzyme. (see for instance http://en.wikipedia.org/wiki/Carbonic_anhydrase . Assume that one variant has a Km of 10 µM and a different variant has a Km of 100 µM. Draw on the same graph a typical Michaelis-Menton plot showing the alteration in the rate of carbonic anhydrase as the CO2 level is varied for the two different variants of enzyme, assuming the concentration of the enzyme (10 mM) in the test tube is kept constant. Assume that you have equal amounts of the two different variants of carbonic anhydrase in a number of test tubes and that the Vmax for both enzymes are the same. Be sure to label the axes. For the same conditions as above, draw a…