Concept explainers
(a)
Interpretation:
The enzyme inhibited by F has to be mentioned.
Concept Introduction:
Enzymes are biological catalysts. Enzyme binds the substrate to its active site and enhances the
For regulating the
(b)
Interpretation:
The enzyme that is inhibited by I has to be mentioned.
Concept Introduction:
Enzymes are biological catalysts. Enzyme binds the substrate to its active site and enhances the rate of reaction. In addition to active site enzyme also contains an inhibitor site where an inhibitor can bind and deform the shape of active site. When the shape of active site got changed, substrate can no longer bind with enzyme so the catalytic activity stops.
For regulating the metabolic activities in order to prevent the excess product formation in the cell, the final product of a pathway act as an inhibitor and stops the catalytic activity of the regulatory enzyme in the first step.
(c)
Interpretation:
Disadvantage of inhibiting enzyme 1 by F has to be explained.
Concept Introduction:
Enzymes are biological catalysts. Enzyme binds the substrate to its active site and enhances the rate of reaction. In addition to active site enzyme also contains an inhibitor site where an inhibitor can bind and deform the shape of active site. When the shape of active site got changed, substrate can no longer bind with enzyme so the catalytic activity stops.
For regulating the metabolic activities in order to prevent the excess product formation in the cell, the final product of a pathway act as an inhibitor and stops the catalytic activity of the regulatory enzyme in the first step.
(d)
Interpretation:
Disadvantage of inhibiting enzyme 6 by F has to be explained.
Concept Introduction:
Enzymes are biological catalysts. Enzyme binds the substrate to its active site and enhances the rate of reaction. In addition to active site enzyme also contains an inhibitor site where an inhibitor can bind and deform the shape of active site. When the shape of active site got changed, substrate can no longer bind with enzyme so the catalytic activity stops.
For regulating the metabolic activities in order to prevent the excess product formation in the cell, the final product of a pathway act as an inhibitor and stops the catalytic activity of the regulatory enzyme in the first step.
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Chapter 17 Solutions
CHEMISTRY: THE MOLECULAR NATURE OF MATTE
- OA. For the structure shown, rank the bond lengths (labeled a, b and c) from shortest to longest. Place your answer in the box. Only the answer in the box will be graded. (2 points) H -CH3 THe b Нarrow_forwardDon't used hand raitingarrow_forwardQuizzes - Gen Organic & Biological Che... ☆ myd21.lcc.edu + O G screenshot on mac - Google Search savings hulu youtube google disney+ HBO zlib Homework Hel...s | bartleby cell bio book Yuzu Reader: Chemistry G periodic table - Google Search b Home | bartleby 0:33:26 remaining CHEM 120 Chapter 5_Quiz 3 Page 1: 1 > 2 > 3 > 6 ¦ 5 > 4 > 7 ¦ 1 1 10 8 ¦ 9 a ¦ -- Quiz Information silicon-27 A doctor gives a patient 0.01 mC i of beta radiation. How many beta particles would the patient receive in I minute? (1 Ci = 3.7 x 10 10 d/s) Question 5 (1 point) Saved Listen 2.22 x 107 222 x 108 3.7 x 108 2.22 x 108 none of the above Question 6 (1 point) Listen The recommended dosage of 1-131 for a test is 4.2 μCi per kg of body mass. How many millicuries should be given to a 55 kg patient? (1 mCi = 1000 μСi)? 230 mCiarrow_forward
- Q4: Rank the relative nucleophilicity of halide ions in water solution and DMF solution, respectively. F CI Br | Q5: Determine which of the substrates will and will not react with NaSCH3 in an SN2 reaction to have a reasonable yield of product. NH2 Br Br Br .OH Brarrow_forwardClassify each molecule as optically active or inactive. Determine the configuration at each H соон Chirality center OH 애 He OH H3C Ноос H H COOH A K B.arrow_forwardQ1: Rank the relative nucleophilicity of the following species in ethanol. CH3O¯, CH3OH, CH3COO, CH3COOH, CH3S Q2: Group these solvents into either protic solvents or aprotic solvents. Acetonitrile (CH3CN), H₂O, Acetic acid (CH3COOH), Acetone (CH3COCH3), CH3CH2OH, DMSO (CH3SOCH3), DMF (HCON(CH3)2), CH3OHarrow_forward
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