engineer the maltose binding protein (MBP) to bind 1, 3, 5 Trinitrobenzene (TNB) - a molecule that is even more explosive than TNT! Instead of its natural ligand, maltose, you hope to develop your mutant into a biosensor that can be used to detect the presence of land mines through identification of TNB in the soil. CH₂OH OH Se NO₂ OH O₂N NO₂ TNB Maltose TNB-binding MBP variant A B с D CH₂OH OH OH OH After the laborious process of mutating the active site of MBP to bind TNB, you identify four variants of MBP that bind to TNB with the following affinities: Ko (μm) 850 9,000 0.4 30 The maximal concentration of TNB that leeches out of land mines into the surrounding soil reaches only 2 mM (milli-molar). Your advisor asks you to use the Ko values you measured to determine which of the variants would be the best candidate for the following purposes. Assume that the fraction of TNB-bound MBP correlates linearly with a signal in your biosensor device from 0 (completely unbound) to 1 (fully bound). a. Which variant would be the most sensitive overall at detecting TNB? Briefly explain your answer.
engineer the maltose binding protein (MBP) to bind 1, 3, 5 Trinitrobenzene (TNB) - a molecule that is even more explosive than TNT! Instead of its natural ligand, maltose, you hope to develop your mutant into a biosensor that can be used to detect the presence of land mines through identification of TNB in the soil. CH₂OH OH Se NO₂ OH O₂N NO₂ TNB Maltose TNB-binding MBP variant A B с D CH₂OH OH OH OH After the laborious process of mutating the active site of MBP to bind TNB, you identify four variants of MBP that bind to TNB with the following affinities: Ko (μm) 850 9,000 0.4 30 The maximal concentration of TNB that leeches out of land mines into the surrounding soil reaches only 2 mM (milli-molar). Your advisor asks you to use the Ko values you measured to determine which of the variants would be the best candidate for the following purposes. Assume that the fraction of TNB-bound MBP correlates linearly with a signal in your biosensor device from 0 (completely unbound) to 1 (fully bound). a. Which variant would be the most sensitive overall at detecting TNB? Briefly explain your answer.
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
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Transcribed Image Text:engineer the maltose binding
protein (MBP) to bind 1, 3, 5 Trinitrobenzene (TNB) - a molecule that is even more
explosive than TNT! Instead of its natural ligand, maltose, you hope to develop your
mutant into a biosensor that can be used to detect the presence of land mines through
identification of TNB in the soil.
NO₂
CH₂OH
CH₂OH
он
A se
OH
OH
NO₂
OH
OH
Maltose
TNB
OH
After the laborious process of mutating the active site of MBP to bind TNB, you identify
four variants of MBP that bind to TNB with the following affinities:
TNB-binding MBP variant
A
B
с
D
Ko (μM)
850
9,000
0.4
30
The maximal concentration of TNB that leeches out of land mines into the surrounding
soil reaches only 2 mM (milli-molar). Your advisor asks you to use the Ko values you
measured to determine which of the variants would be the best candidate for the
following purposes. Assume that the fraction of TNB-bound MBP correlates linearly with
a signal in your biosensor device from 0 (completely unbound) to 1 (fully bound).
a. Which variant would be the most sensitive overall at detecting TNB? Briefly
explain your answer.
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