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Biophys J, January 1999, p. 164-175, Vol. 76, No. 1
-Hairpin Folding at Constant
Temperature
The Lerner Research Institute, The Cleveland Clinic Foundation, Cleveland, Ohio 44195 USA
Monte Carlo simulations were applied to
-hairpin
folding of a valine-based peptide. Two valine residues in the middle of the peptide were substituted with glycine, to serve as turn residues. Unlike lattice model simulations, structure prediction methods, and
unfolding simulations, our simulations used an atom-based model,
constant temperature (274 K), and non-
-hairpin initial conformations. Based on the concept of solvent reference, the effective
energy function simplified the solvent calculation and overcame the
multiple minima problem. Driven by the hydrophobic interaction, the
peptide first folded into a compact U-shaped conformation with a
central turn, in analogy to the initial collapse with simultaneous
nucleation in protein folding. The peptide units in the U-shaped
conformation then reoriented, gradually forming hydrogen bonds in the
-hairpin pattern from the
-turn to the ends of the strands. With
the same energy function, an alanine-based peptide folded into
helix-dominated structures. The basic structure types (
-helix or
-hairpin) that formed during the simulations depended upon the amino
acid sequence. Compared with helix,
-hairpin folding is driven
mainly by the hydrophobic interaction. Hydrogen bonding is necessary to
maintain the ordered secondary structure.
Biophys J, January 1999, p. 164-175, Vol. 76, No. 1
© 1999 by the Biophysical Society 0006-3495/99/01/164/12 $2.00
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