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静电对蛋白质组装动力学和热力学的贡献。

Electrostatic contributions to the kinetics and thermodynamics of protein assembly.

作者信息

Dell'Orco Daniele, Xue Wei-Feng, Thulin Eva, Linse Sara

机构信息

Department of Biophysical Chemistry, Lund University, S-221 00 Lund, Sweden.

出版信息

Biophys J. 2005 Mar;88(3):1991-2002. doi: 10.1529/biophysj.104.049189. Epub 2004 Dec 13.

Abstract

The role of electrostatic interactions in the assembly of a native protein structure was studied using fragment complementation. Contributions of salt, pH, or surface charges to the kinetics and equilibrium of calbindin D(9k) reconstitution was measured in the presence of Ca(2+) using surface plasmon resonance and isothermal titration calorimetry. Whereas surface charge substitutions primarily affect the dissociation rate constant, the association rates are correlated with subdomain net charge in a way expected for Coulomb interactions. The affinity is reduced in all mutants, with the largest effect (260-fold) observed for the double mutant K25E+K29E. At low net charge, detailed charge distribution is important, and charges remote from the partner EF-hand have less influence than close ones. The effects of salt and pH on the reconstitution are smaller than mutational effects. The interaction between the wild-type EF-hands occurs with high affinity (K(A) = 1.3 x 10(10) M(-1); K(D) = 80 pM). The enthalpy of association is overall favorable and there appears to be a very large favorable entropic contribution from the desolvation of hydrophobic surfaces that become buried in the complex. Electrostatic interactions contribute significantly to the affinity between the subdomains, but other factors, such as hydrophobic interactions, dominate.

摘要

利用片段互补技术研究了静电相互作用在天然蛋白质结构组装中的作用。在存在Ca(2+)的情况下,使用表面等离子体共振和等温滴定量热法测量了盐、pH值或表面电荷对钙结合蛋白D(9k)重构动力学和平衡的贡献。虽然表面电荷取代主要影响解离速率常数,但结合速率与亚结构域净电荷的相关性符合库仑相互作用预期的方式。所有突变体的亲和力均降低,其中双突变体K25E+K29E的影响最大(260倍)。在低净电荷时,详细的电荷分布很重要,远离伴侣EF手的电荷比靠近的电荷影响小。盐和pH对重构的影响小于突变效应。野生型EF手之间的相互作用具有高亲和力(K(A)=1.3×10(10) M(-1);K(D)=80 pM)。结合焓总体上是有利的,并且由于疏水表面去溶剂化而埋入复合物中似乎存在非常大的有利熵贡献。静电相互作用对亚结构域之间的亲和力有显著贡献,但其他因素,如疏水相互作用,起主导作用。

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本文引用的文献

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9
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