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疏水蛋白质腔内分子间氢键的能量学

Energetics of intermolecular hydrogen bonds in a hydrophobic protein cavity.

作者信息

Liu Lan, Baergen Alyson, Michelsen Klaus, Kitova Elena N, Schnier Paul D, Klassen John S

出版信息

J Am Soc Mass Spectrom. 2014 May;25(5):742-50. doi: 10.1007/s13361-014-0833-z.

Abstract

This work explores the energetics of intermolecular H-bonds inside a hydrophobic protein cavity. Kinetic measurements were performed on the gaseous deprotonated ions (at the -7 charge state) of complexes of bovine β-lactoglobulin (Lg) and three monohydroxylated analogs of palmitic acid (PA): 3-hydroxypalmitic acid (3-OHPA), 7-hydroxypalmitic acid (7-OHPA), and 16-hydroxypalmitic acid (16-OHPA). From the increase in the activation energy for the dissociation of the (Lg + X-OHPA)⁷⁻ ions, compared with that of the (Lg + PA)⁷⁻ ion, it is concluded that the –OH groups of the X-OHPA ligands participate in strong (5-11 kcal mol⁻¹) intermolecular H-bonds in the hydrophobic cavity of Lg. The results of molecular dynamics (MD) simulations suggest that the –OH groups of 3-OHPA and 16-OHPA act as H-bond donors and interact with backbone carbonyl oxygens, whereas the –OH group of 7-OHPA acts as both H-bond donor and acceptor with nearby side chains. The capacity for intermolecular H-bonds within the Lg cavity, as suggested by the gas-phase measurements, does not necessarily lead to enhanced binding in aqueous solution. The association constant (Ka) measured for 7-OHPA [(2.3 ± 0.2) × 10⁵ M⁻¹] is similar to the value for the PA [(3.8 ± 0.1) × 10⁵ M⁻¹]; Ka for 3-OHPA [(1.1 ± 0.3) × 10⁶ M⁻¹] is approximately three-times larger, whereas Ka for 16-OHPA [(2.3 ± 0.2) × 10⁴ M⁻¹] is an order of magnitude smaller. Taken together, the results of this study suggest that the energetic penalty to desolvating the ligand –OH groups, which is necessary for complex formation, is similar in magnitude to the energetic contribution of the intermolecular H-bonds.

摘要

本研究探讨了疏水蛋白腔内分子间氢键的能量学。对牛β-乳球蛋白(Lg)与三种棕榈酸(PA)的单羟基化类似物:3-羟基棕榈酸(3-OHPA)、7-羟基棕榈酸(7-OHPA)和16-羟基棕榈酸(16-OHPA)形成的复合物的气态去质子化离子(-7电荷态)进行了动力学测量。与(Lg + PA)⁷⁻离子相比,(Lg + X-OHPA)⁷⁻离子解离的活化能增加,由此得出结论,X-OHPA配体的–OH基团在Lg的疏水腔内参与了强(5 - 11千卡摩尔⁻¹)分子间氢键。分子动力学(MD)模拟结果表明,3-OHPA和16-OHPA的–OH基团作为氢键供体,与主链羰基氧相互作用,而7-OHPA的–OH基团既作为氢键供体又作为受体与附近的侧链相互作用。气相测量结果表明,Lg腔内分子间氢键的形成能力并不一定会导致在水溶液中结合增强。7-OHPA的缔合常数(Ka)[(2.3 ± 0.2)× 10⁵ M⁻¹]与PA的缔合常数[(3.8 ± 0.1)× 10⁵ M⁻¹]相似;3-OHPA的Ka[(1.1 ± 0.3)× 10⁶ M⁻¹]大约大三倍,而16-OHPA的Ka[(2.3 ± 0.2)× 10⁴ M⁻¹]小一个数量级。综上所述,本研究结果表明,配体–OH基团去溶剂化所需的能量消耗(这是形成复合物所必需的)在大小上与分子间氢键的能量贡献相似。

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