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book Biochemistry 4th Edition by Christopher Mathews,Kensal van Holde, Dean Appling, Spencer Anthony Cahill cover

Biochemistry 4th Edition by Christopher Mathews,Kensal van Holde, Dean Appling, Spencer Anthony Cahill

Edition 4ISBN: 978-0138004644
book Biochemistry 4th Edition by Christopher Mathews,Kensal van Holde, Dean Appling, Spencer Anthony Cahill cover

Biochemistry 4th Edition by Christopher Mathews,Kensal van Holde, Dean Appling, Spencer Anthony Cahill

Edition 4ISBN: 978-0138004644
Exercise 6
Consider the following hypothetical metabolic pathway: Consider the following hypothetical metabolic pathway:    (a) Under intracellular conditions, the activity of enzyme X is 100 pmol/l0 6 cells/sec. Calculate the effect on metabolic flux rate (pmol/10 6 cells/sec) of B C of the following treatments. Calculate as % change (increase or decrease). Treatment % Change in flux Inhibitor that reduces activity of X by 10% Activator that increases activity of X by 10% (b) Now consider a substrate cycle operating with enzymes X and Y in the same hypothetical metabolic pathway:    Under intracellular conditions, the activity of enzyme X is 100 pmol/10 6 cells/sec, and that of enzyme Y is 80 pmol/10 6 cells/ sec. What are the direction and rate (pmol/10 6 cells/sec) of metabolic flux between B and C  (c) Calculate the effect on direction and metabolic flux rate of the following treatments. Calculate as % change (increase or decrease).   (d) Briefly summarize the regulatory advantage(s) of a substrate cycle in a pathway.
(a) Under intracellular conditions, the activity of enzyme X is 100 pmol/l0 6 cells/sec. Calculate the effect on metabolic flux rate (pmol/10 6 cells/sec) of B C of the following treatments. Calculate as % change (increase or decrease).
Treatment % Change in flux
Inhibitor that reduces activity of X by 10% Activator that increases activity of X by 10%
(b) Now consider a substrate cycle operating with enzymes X and Y in the same hypothetical metabolic pathway: Consider the following hypothetical metabolic pathway:    (a) Under intracellular conditions, the activity of enzyme X is 100 pmol/l0 6 cells/sec. Calculate the effect on metabolic flux rate (pmol/10 6 cells/sec) of B C of the following treatments. Calculate as % change (increase or decrease). Treatment % Change in flux Inhibitor that reduces activity of X by 10% Activator that increases activity of X by 10% (b) Now consider a substrate cycle operating with enzymes X and Y in the same hypothetical metabolic pathway:    Under intracellular conditions, the activity of enzyme X is 100 pmol/10 6 cells/sec, and that of enzyme Y is 80 pmol/10 6 cells/ sec. What are the direction and rate (pmol/10 6 cells/sec) of metabolic flux between B and C  (c) Calculate the effect on direction and metabolic flux rate of the following treatments. Calculate as % change (increase or decrease).   (d) Briefly summarize the regulatory advantage(s) of a substrate cycle in a pathway.
Under intracellular conditions, the activity of enzyme X is 100 pmol/10 6 cells/sec, and that of enzyme Y is 80 pmol/10 6 cells/ sec. What are the direction and rate (pmol/10 6 cells/sec) of metabolic flux between B and C
(c) Calculate the effect on direction and metabolic flux rate of the following treatments. Calculate as % change (increase or decrease). Consider the following hypothetical metabolic pathway:    (a) Under intracellular conditions, the activity of enzyme X is 100 pmol/l0 6 cells/sec. Calculate the effect on metabolic flux rate (pmol/10 6 cells/sec) of B C of the following treatments. Calculate as % change (increase or decrease). Treatment % Change in flux Inhibitor that reduces activity of X by 10% Activator that increases activity of X by 10% (b) Now consider a substrate cycle operating with enzymes X and Y in the same hypothetical metabolic pathway:    Under intracellular conditions, the activity of enzyme X is 100 pmol/10 6 cells/sec, and that of enzyme Y is 80 pmol/10 6 cells/ sec. What are the direction and rate (pmol/10 6 cells/sec) of metabolic flux between B and C  (c) Calculate the effect on direction and metabolic flux rate of the following treatments. Calculate as % change (increase or decrease).   (d) Briefly summarize the regulatory advantage(s) of a substrate cycle in a pathway. (d) Briefly summarize the regulatory advantage(s) of a substrate cycle in a pathway.
Explanation
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(a)The metabolic flux or flux is the rat...

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Biochemistry 4th Edition by Christopher Mathews,Kensal van Holde, Dean Appling, Spencer Anthony Cahill
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