Assume that some protein molecule, in its folded native state, has one favored conformation. But when it is denatured, it becomes a “random coil,” with many possible conformations. (a) If we only consider the change in entropy for the protein, what must be the sign of ∆S for the change: native → denatured? (Note: As suggested in the next problem, this does not include solvent effects, which also make significant contributions to ∆S.) (b) How will the contribution of ∆S for native → denatured affect the favorability of the process? What apparent requirement does this impose on ∆H if proteins are to be stable structures?

Biochemistry
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Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
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Chapter1: Biochemistry: An Evolving Science
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Assume that some protein molecule, in its folded native state, has one favored conformation. But when it is denatured, it becomes a “random coil,” with many possible conformations. (a) If we only consider the change in entropy for the protein, what must be the sign of ∆S for the change: native → denatured? (Note: As suggested in the next problem, this does not include solvent effects, which also make significant contributions to ∆S.) (b) How will the contribution of ∆S for native → denatured affect the favorability of the process? What apparent requirement does this impose on ∆H if proteins are to be stable structures?

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