TCB Publications - Abstract
Yi Zhang, Klaus Schulten, Martin Gruebele, Paramjit S. Bansal, David Wilson, and Norelle L. Daly. Disulfide bridges: Bringing together frustrated structure in a bioactive peptide. Biophysical Journal, 110:1744-1752, 2016. (PMC: PMC4850350)
 -Cys
-Cys and Cys
 and Cys -Cys
-Cys ) are anticorrelated within
) are anticorrelated within  1
1  s of bridge formation or
dissolution: when the peptide is in nativelike structures and one of the distances shortens to allow bond formation, the other
tends to lengthen. Simulations over longer timescales, when the denatured state is less structured, do not show the anticorrelation.
We propose that the native state contains structural elements that frustrate one another’s folding, and that the two bridges
are critical for snapping the frustrated native structure into place. In contrast, the Cys
s of bridge formation or
dissolution: when the peptide is in nativelike structures and one of the distances shortens to allow bond formation, the other
tends to lengthen. Simulations over longer timescales, when the denatured state is less structured, do not show the anticorrelation.
We propose that the native state contains structural elements that frustrate one another’s folding, and that the two bridges
are critical for snapping the frustrated native structure into place. In contrast, the Cys -Cys
-Cys bridge is predicted to form together
with either of the other two bridges. Indeed, experimental chromatography and nuclear magnetic resonance data show that an
engineered peptide with the Cys
 bridge is predicted to form together
with either of the other two bridges. Indeed, experimental chromatography and nuclear magnetic resonance data show that an
engineered peptide with the Cys -Cys
-Cys bridge deleted can still fold into its near-native structure even in its noncyclic form, confirming
the lesser role of the Cys
 bridge deleted can still fold into its near-native structure even in its noncyclic form, confirming
the lesser role of the Cys -Cys
-Cys bridge. The results highlight the importance of disulfide bridges in a small bioactive peptide
to bring together frustrated structure in addition to maintaining protein structural stability.
 bridge. The results highlight the importance of disulfide bridges in a small bioactive peptide
to bring together frustrated structure in addition to maintaining protein structural stability.
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