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Fluctuation power spectra reveal dynamical heterogeneity of peptides

Khatri, Bhavin; Yew, Zu Thur; Krivov, Sergei; McLeish, Tom; Paci, Emanuele

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Authors

Bhavin Khatri

Zu Thur Yew

Sergei Krivov

Tom McLeish

Emanuele Paci



Abstract

Characterizing the conformational properties and dynamics of biopolymers and their relation to biological activity and function is an ongoing challenge. Single molecule techniques have provided a rich experimental window on these properties, yet they have often relied on simple one-dimensional projections of a multidimensional free energy landscape for a practical interpretation of the results. Here, we study three short peptides with different structural propensity (α helical, β hairpin, and random coil) in the presence (or absence) of a force applied to their ends using Langevin dynamics simulation and an all-atom model with implicit solvation. Each peptide produces fluctuation power spectra with a characteristic dynamic fingerprint consistent with persistent structural motifs of helices, hairpins, and random coils. The spectra for helix formation shows two well-defined relaxation modes, corresponding to local relaxation and cooperative coil to uncoil interconversion. In contrast, both the hairpin and random coil are polymerlike, showing a broad and continuous range of relaxation modes giving characteristic power laws of ω−5/4 and ω−3/2, respectively; the −5/4 power law for hairpins is robust and has not been previously observed. Langevin dynamics simulations of diffusers on a potential of mean force derived from the atomistic simulations fail to reproduce the fingerprints of each peptide motif in the power spectral density, demonstrating explicitly that such information is lacking in such one-dimensional projections. Our results demonstrate the yet unexploited potential of single molecule fluctuation spectroscopy to probe more fine scaled properties of proteins and biological macromolecules and how low dimensional projections may cause the loss of relevant information.

Citation

Khatri, B., Yew, Z. T., Krivov, S., McLeish, T., & Paci, E. (2010). Fluctuation power spectra reveal dynamical heterogeneity of peptides. The Journal of Chemical Physics, 133(1), Article 015101. https://doi.org/10.1063/1.3456552

Journal Article Type Article
Publication Date Jan 1, 2010
Deposit Date Oct 31, 2011
Publicly Available Date Jan 12, 2012
Journal Journal of Chemical Physics
Print ISSN 0021-9606
Electronic ISSN 1089-7690
Publisher American Institute of Physics
Peer Reviewed Peer Reviewed
Volume 133
Issue 1
Article Number 015101
DOI https://doi.org/10.1063/1.3456552
Keywords Biochemistry, Biomechanics, Fluctuations, Free energy, Molecular biophysics, Polymers, Proteins, Simulation, Spectral analysis.

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Copyright Statement
Copyright 2010 American Institute of Physics. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. The following article appeared in Khatri, Bhavin and Yew, Zu Thur and Krivov, Sergei and McLeish, Tom and Paci, Emanuele (2010) 'Fluctuation power spectra reveal dynamical heterogeneity of peptides.', Journal of chemical physics., 133 (1). 015101 and may be found at http://dx.doi.org/10.1063/1.3456552





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