Microbiology: An Introduction (13th Edition)
Microbiology: An Introduction (13th Edition)
13th Edition
ISBN: 9780134605180
Author: Gerard J. Tortora, Berdell R. Funke, Christine L. Case, Derek Weber, Warner Bair
Publisher: PEARSON
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Chapter 5, Problem 2R

DRAW ITUsing the diagrams below, show each of the following:

  1. a. where the substrate will bind
  2. b. where the competitive inhibitor will bind
  3. c. where the noncompetitive inhibitor will bind
  4. d. which of the four elements could be the inhibitor in feedback inhibition
  5. e. What effect will the reactions in (a), (b), and (c) have?

Chapter 5, Problem 2R, DRAW ITUsing the diagrams below, show each of the following: a. where the substrate will bind b.

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Students have asked these similar questions
What is the kinetical hallmark of reversible competitive inhibition?   A. Vmax cannot be attained, even at high substrate concentrations.     B. Vmax can be attained at sufficiently high concentrations of substrate.     C. The apparent value for KM decreases as more inhibitor is added.     D. The apparent value for KM remains unchanged as more inhibitor is added.     E. Vmax decreases as more inhibitor is added.
Graph a double reciprocal plot that satisfy the following:  a. Michaelis-Menten kinetics enzyme, b. an inhibitor that binds only free enzyme (competitive), c. an inhibitor that binds only enzyme-substrate complex.
A new drug has been discovered which inhibits the reaction catalyzed by enzyme A. The information on this drug is shown in the graph below. Based on this information, which one of the following is most correct about this drug? 1/No 2- inhibitor (0.1 uM] no inhibitor 11 1/[S), uM OA. competitive inhibitor binding to the substrate O B. competitive inhibitor binding to free enzyme A OC. uncompetitive inhibitor binding to [ES] O D. uncompetitive inhibitor binding to the Michaelis complex O E. allosteric enzyme

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Microbiology: An Introduction (13th Edition)

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