1. Shown below is a metabolic pathway: Es E4 E F E1 E2 E3 A - B C- E6 Q R S E7 E8 Suppose we have too much of "S" in the cell, please answer the following questions, with regards to feedback inhibition: a) Which enzyme is most likely to be regulated? b) Which substance will act as the 'regulator'? c) Name the "site" where this 'regulator' will bind to the enzyme: d) Is this substance (from #b), a homotropic or heterotropic modulator?
1. Shown below is a metabolic pathway: Es E4 E F E1 E2 E3 A - B C- E6 Q R S E7 E8 Suppose we have too much of "S" in the cell, please answer the following questions, with regards to feedback inhibition: a) Which enzyme is most likely to be regulated? b) Which substance will act as the 'regulator'? c) Name the "site" where this 'regulator' will bind to the enzyme: d) Is this substance (from #b), a homotropic or heterotropic modulator?
Biochemistry
9th Edition
ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Publisher:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Chapter1: Biochemistry: An Evolving Science
Section: Chapter Questions
Problem 1P
Related questions
Question
Solve all part please.
![1.
Shown below is a metabolic pathway:
Es
E
E4
E1
E2
A - B » C + D
E3
E6
Q-R - S
E7
Es
Suppose we have too much of "S" in the cell, please answer the following questions, with regards to feedback
inhibition:
a)
Which enzyme is most likely to be regulated?
b)
Which substance will act as the 'regulator'?
c)
Name the "site" where this 'regulator' will bind to the enzyme:
d)
Is this substance (from #b), a homotropic or heterotropic modulator?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa8fc0b0b-7e23-4ecc-9f5d-0c499ae4a321%2F8922b666-d706-4f85-85ee-b6ea092d8c8e%2Fxnv1kq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1.
Shown below is a metabolic pathway:
Es
E
E4
E1
E2
A - B » C + D
E3
E6
Q-R - S
E7
Es
Suppose we have too much of "S" in the cell, please answer the following questions, with regards to feedback
inhibition:
a)
Which enzyme is most likely to be regulated?
b)
Which substance will act as the 'regulator'?
c)
Name the "site" where this 'regulator' will bind to the enzyme:
d)
Is this substance (from #b), a homotropic or heterotropic modulator?
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