Kohtani Motoya, Jarrold Martin F
Contribution from the Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, USA.
J Am Chem Soc. 2002 Sep 18;124(37):11148-58. doi: 10.1021/ja012755r.
Equilibrium constants for the adsorption of the first water molecule onto a variety of unsolvated alanine-based peptides have been measured and Delta H degrees and DeltaS degrees have been determined. The studies were designed to examine the effects of conformation, charge, and composition on the propensity for peptides to bind water. In general, water adsorption occurs significantly more readily on the globular peptides than on helical ones: several of the singly charged helical peptides were not observed to adsorb a water molecule even at -50 degrees C. These results place a limit on the free energy change for interaction between a water molecule and the helical peptide group. Molecular dynamics simulations reproduce most of the main features of the results. The ability to establish a network of hydrogen bonds to several different hydrogen-bonding partners emerges as a critical factor for strong binding of the water molecule. Whether the charge site is involved in water adsorption depends on how well it is shielded. Peptides containing a protonated histidine bind water much more strongly that those containing a protonated lysine because the delocalized charge on histidine is difficult to shield. The entropy change for adsorption of the first water molecule is correlated with the enthalpy change.
已测量了第一个水分子吸附到各种未溶剂化的丙氨酸基肽上的平衡常数,并确定了ΔH°和ΔS°。这些研究旨在考察构象、电荷和组成对肽结合水倾向的影响。一般来说,球状肽比螺旋肽更容易吸附水:即使在-50℃下,也未观察到几种单电荷螺旋肽吸附水分子。这些结果限制了水分子与螺旋肽基团相互作用的自由能变化。分子动力学模拟重现了结果的大部分主要特征。与几个不同的氢键伙伴建立氢键网络的能力成为水分子强结合的关键因素。电荷位点是否参与水吸附取决于其被屏蔽的程度。含有质子化组氨酸的肽比含有质子化赖氨酸的肽结合水的能力强得多,因为组氨酸上的离域电荷难以被屏蔽。第一个水分子吸附的熵变与焓变相关。