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Temperature dependence of water interactions with the amide carbonyls of α-helices

  • Scott H. Brewer
  • , Yuefeng Tang
  • , Dung M. Vu
  • , S. Gnanakaran
  • , Daniel P. Raleigh
  • , R. Brian Dyer
  • Franklin and Marshall College, Lancaster
  • Stony Brook University
  • Los Alamos National Laboratory
  • Emory University

Research output: Contribution to journalArticlepeer-review

31 Scopus citations

Abstract

Hydration is a key determinant of the folding, dynamics, and function of proteins. In this study, temperature-dependent Fourier transform infrared (FTIR) spectroscopy combined with singular value decomposition (SVD) and global fitting were used to investigate both the interaction of water with α-helical proteins and the cooperative thermal unfolding of these proteins. This methodology has been applied to an isolated α-helix (Fs peptide) and to globular α-helical proteins including the helical subdomain and full-length villin headpiece (HP36 and HP67). The results suggest a unique IR signature for the interaction of water with the helical amide carbonyl groups of the peptide backbone. The IR spectra indicate a weakening of the net hydrogen bond strength of water to the backbone carbonyls with increasing temperature. This weakening of the backbone solvation occurs as a discrete transition near the maximum of the temperature-dependent hydrophobic effect, not a continuous change with increasing temperature. Possible molecular origins of this effect are discussed with respect to previous molecular dynamics simulations of the temperature-dependent solvation of the helix backbone.

Original languageEnglish
Pages (from-to)5293-5299
Number of pages7
JournalBiochemistry
Volume51
Issue number26
DOIs
StatePublished - Jul 3 2012

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