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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![The number of ATP molecules that can be made from the oxidation of
Cİs-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
122
105
121
100
119
103](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Feff8b82a-2390-4d24-9cd3-ba60ab4584d9%2F3c45e82f-c6d4-4cfa-8b4a-59887ed780f8%2Fhwjl5rx_processed.jpeg&w=3840&q=75)
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- 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 . 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…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…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 . Imidazol is a competitive inhibitor of carbonic anhydrase. It is effective at an alkaline (high) pH; in lower (more acidic) pH, it no longer inhibits the enzyme. Draw on a separate graph a Lineweaver-Burke plot for the effects of this compound at high pH and low pH. Be sure to label the axes and put in sample data points.
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- Corticosteroids (a type of hormone), and Nonsteroidal Anti-inflammatory Drugs (NSAIDs) are non-narcotic pain relievers. Both medications are prescribed to reduce inflammation in the body. NSAIDs such as aspirin, acetaminophen, and ibuprofen are able to reduce pain, fever, and inflammation by blocking the action of the cyclooxygenase enzyme (COX) that catalyzes the conversion of arachidonic acid into prostaglandins. Common corticosteroids include prednisone, cortisone, and methylprednisolone. Choose one of these three corticosteroids. The corticosteroid that you choose and then explain how the drug works to reduce inflammation.One of your colleagues has obtained a sample of muscle phosphorylase b that is known to be relatively inactive. She has approached you for advice on how to set up an appropriate assay. She has the following items available, not all of which are appropriate for this study. Help her out by selecting the items that she should use and what their purpose is in the assay, and then explain why each of the other items would not be useful. 1. 100 UM AMP 2. 100 UM GTP 3.100 uM glucose 4. 100 uM glucose 6-phosphate 5. Branched glycogen 6. Amylose (i.e. unbranched glycogen) 7.50 mM HEPES buffer, pH 7.5 8. 50 mM potassium phosphate buffer, pH 7.5 Write out a short explanation for each of the above items, and upload your answers by the due date.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. Morphine is a non-competitive inhibitor of carbonic anhydrase. Draw on the same Lineweaver-Burke plot as above a graph showing the effect of a concentration of morphine that inhibits the first enzyme such that it reduces the Vmax to ½ its maximal value. Make sure to put in sample data points. Imidazol is a competitive inhibitor of carbonic anhydrase. It is effective at an alkaline (high) pH; in lower (more acidic) pH, it no longer inhibits the enzyme. Draw on a separate graph a Lineweaver-Burke plot for the effects of this compound at high pH and low pH. Be sure to label the axes and put in sample data points.
- Discuss the importance of redox reactions in the metabolism of glucose. Be sure to address nicotinamide adenine dinucleotide in your answer.Based on the image below, select the correct statements. Note: There may be more than 1 correct response. Ribose 5-phosphate ribose phosphate pyrophosphokinase (PRPP synthetase) glutamine-PRPP amidotransferase adenylosuccinate synthetase AMP -> PRPP 5-Phosphoribosylamine I adenylosuccinate lyase 9 steps Adenylosuccinate AMP IMP <-- ADP <- AMP <-- GMP <-- IMP IMP dehydrogenase <- GMP. XMP ADP ATP XMP-glutamine amidotransferase GMP يا Increased levels of ADP inhibit the production of PRPP. Increased levels of GMP inhibit the production of XMP. Increased ADP activates PRPP synthase to increase PRPP levels. Increased IMP activates glutamine-PRPP amidotransferase to further increase IMP levels.PKU Worksheet Read the following paragraph about a genetic disorder identified as an inborn error of metabolism. Illustrate your understanding of metabolic pathways and mutations by responding to the guiding questions. Please also use this link ( https://rarediseases.org/rare-diseases/phenylketonuria/ ) for more information. Phenylketonuria (PKU) is an inherited disorder that is identified as an inborn error of metabolism. It is easily detectable during the first days of life through newborn screening tests. A drop of the infant’s blood can determine the presence of the enzyme that is responsible for processing the essential amino acid phenylalanine. With normal enzyme activity, phenylalanine is converted to another amino acid (tyrosine), which is then utilized by the body to produce melanin (pigmentation in hair, skin, eyes), thyroid and other hormones. However, when the phenylalanine hydroxylase enzyme is absent or deficient, phenylalanine abnormally accumulates in the blood. A…
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