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Physics > Chemical Physics

Title: Origin of entropy convergence in hydrophobic hydration and protein folding

Abstract: An information theory model is used to construct a molecular explanation why hydrophobic solvation entropies measured in calorimetry of protein unfolding converge at a common temperature. The entropy convergence follows from the weak temperature dependence of occupancy fluctuations for molecular-scale volumes in water. The macroscopic expression of the contrasting entropic behavior between water and common organic solvents is the relative temperature insensitivity of the water isothermal compressibility. The information theory model provides a quantitative description of small molecule hydration and predicts a negative entropy at convergence. Interpretations of entropic contributions to protein folding should account for this result.
Comments: Phys. Rev. Letts. (in press 1996), 3 pages, 3 figures
Subjects: Chemical Physics (physics.chem-ph)
Journal reference: Phys. Rev. Letts. 77 (1996) 4966
Report number: LA-UR-96-2773
Cite as: arXiv:physics/9611013v2 [physics.chem-ph]

Submission history

From: Lawrence Pratt [view email]
[v1] Fri, 15 Nov 1996 17:06:59 GMT (0kb,I)
[v2] Mon, 18 Nov 1996 16:07:11 GMT (16kb)