Hydrogen-Bond Dynamics and Energetics of Biological Water.

Aniruddha Adhikari, Won-Woo Park, Oh-Hoon Kwon

Journal: ChemPlusChem 2021;85(12):2657-2665

PMID: 33305536

Abstract

Water molecules in the immediate vicinity of biomacromolecules and biomimetic organized assemblies often exhibit a markedly distinct behavior from that of their bulk counterparts. The overall sluggish behavior of biological water substantially affects the stability and integrity of biomolecules, as well as the successful execution of various crucial water-mediated biochemical phenomena. In this Minireview, insights are provided into the features of truncated hydrogen-bond networks that grant biological water its unique characteristics. In particular, experimental results and theoretical investigations, based on chemical kinetics, are presented that have shed light on the dynamics and energetics governing such characteristics. It is emphasized how such details help us to understand the energetics of biological water, an aspect relatively less explored than its dynamics. For instance, when biological water at hydrophilic or charged protein surfaces was explored, the free energy of H-bond breakage was found to be of the order of 0.4 kcal mol higher than that of bulk water.

© 2020 Wiley-VCH GmbH.

Address: Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), 44919, Ulsan, Republic of Korea.; Department of Physics, UNIST, 44919, Ulsan, Republic of Korea.; Center for Soft and Living Matter, Institute for Basic Science (IBS), 44919, Ulsan, Republic of Korea.

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