In the pathway M1 + M2 M3+ M4, enzyme E facilitates the reaction. If compound M4 is further metabolized through a series of steps to form compound M10, and compound M10 inhibits enzyme E, one could conclude that O a. enzyme E is subject to feedback inhibition. O b. enzyme E is subject to feedback stimulation. O c. compound M4 is an allosteric activator of the first reaction. O d. compound M10 is a competitive inhibitor of the first reaction. O e. compound M4 is a coenzyme in the first reaction.

Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
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QUESTION 42
In the pathway M1 + M2 → M3+ M4, enzyme E facilitates the reaction. If compound M4 is further metabolized through a series of steps to form
compound M10, and compound M10 inhibits enzyme E, one could conclude that
O a. enzyme E is subject to feedback inhibition.
O b. enzyme E is subject to feedback stimulation.
O c. compound M4 is an allosteric activator of the first reaction.
O d. compound M10 is a competitive inhibitor of the first reaction.
O e. compound M4 is a coenzyme in the first reaction.
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Transcribed Image Text:QUESTION 42 In the pathway M1 + M2 → M3+ M4, enzyme E facilitates the reaction. If compound M4 is further metabolized through a series of steps to form compound M10, and compound M10 inhibits enzyme E, one could conclude that O a. enzyme E is subject to feedback inhibition. O b. enzyme E is subject to feedback stimulation. O c. compound M4 is an allosteric activator of the first reaction. O d. compound M10 is a competitive inhibitor of the first reaction. O e. compound M4 is a coenzyme in the first reaction. Click Save and Submit to save and submit. Click Save All Answers to save all answers. 2 =9³ F2 #3 20 F3 $ 4 F4 % 5 FS. MacBook Pro WERT & 7 Y E * ∞
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