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September 12, 2011Proceedings of the National Academy of Sciences163 citationsOpen Access

Signature of hydrophobic hydration in a single polymer

ILIsaac T. S. LiGWGilbert C. Walker

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Abstract

Hydrophobicity underpins self-assembly in many natural and synthetic molecular and nanoscale systems. A signature of hydrophobicity is its temperature dependence. The first experimental evaluation of the temperature and size dependence of hydration free energy in a single hydrophobic polymer is reported, which tests key assumptions in models of hydrophobic interactions in protein folding. Herein, the hydration free energy required to extend three hydrophobic polymers with differently sized aromatic side chains was directly measured by single molecule force spectroscopy. The results are threefold. First, the hydration free energy per monomer is found to be strongly dependent on temperature and does not follow interfacial thermodynamics. Second, the temperature dependence profiles are distinct among the three hydrophobic polymers as a result of a hydrophobic size effect at the subnanometer scale. Third, the hydration free energy of a monomer on a macromolecule is different from a free monomer; corrections for the reduced hydration free energy due to hydrophobic interaction from neighboring units are required.

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Li et al. (2011) studied this question.

synapsesocial.com/papers/6a214fe1c4e60624665ae6e6https://doi.org/10.1073/pnas.1105450108
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