3.3. The enzyme, fumarase, has the following kinetic constants: S+EES P+E where k₁= 10' M¹s¹ k₁=4.4 x 10¹ s¹ k₂= 10³ s1 a. What is the value of the Michaelis constant for this enzyme? b. At an enzyme concentration of 10 M, what will be the initial rate of product formation at a substrate concentration of 10³ M? [Courtesy of D. J. Kirwan from "Collected Coursework Problems in Biochemical Engi- neering" compiled by H. W. Blanch for 1977 Am. Soc. Eng. Educ. Summer School.]
3.3. The enzyme, fumarase, has the following kinetic constants: S+EES P+E where k₁= 10' M¹s¹ k₁=4.4 x 10¹ s¹ k₂= 10³ s1 a. What is the value of the Michaelis constant for this enzyme? b. At an enzyme concentration of 10 M, what will be the initial rate of product formation at a substrate concentration of 10³ M? [Courtesy of D. J. Kirwan from "Collected Coursework Problems in Biochemical Engi- neering" compiled by H. W. Blanch for 1977 Am. Soc. Eng. Educ. Summer School.]
Applications and Investigations in Earth Science (9th Edition)
9th Edition
ISBN:9780134746241
Author:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
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Chapter1: The Study Of Minerals
Section: Chapter Questions
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![3.3. The enzyme, fumarase, has the following kinetic constants:
S+EES P+E
where k₁= 10 M¹ s
k₁=4.4 x 10¹ s¹
k₂= 10¹ s¹
a. What is the value of the Michaelis constant for this enzyme?
b. At an enzyme concentration of 10 M. what will be the initial rate of product formation at
a substrate concentration of 103 M?
[Courtesy of D. J. Kirwan from "Collected Coursework Problems in Biochemical Engi-
neering" compiled by H. W. Blanch for 1977 Am. Soc. Eng. Educ. Summer School.]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F228e976d-c67e-4686-9837-7ee26cea613b%2F7168f1bf-7e30-4d90-9615-ecced5d349b8%2F5hy0iyq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3.3. The enzyme, fumarase, has the following kinetic constants:
S+EES P+E
where k₁= 10 M¹ s
k₁=4.4 x 10¹ s¹
k₂= 10¹ s¹
a. What is the value of the Michaelis constant for this enzyme?
b. At an enzyme concentration of 10 M. what will be the initial rate of product formation at
a substrate concentration of 103 M?
[Courtesy of D. J. Kirwan from "Collected Coursework Problems in Biochemical Engi-
neering" compiled by H. W. Blanch for 1977 Am. Soc. Eng. Educ. Summer School.]
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