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膜蛋白-去污剂复合物相互作用的定量分析。

Quantification of Membrane Protein-Detergent Complex Interactions.

机构信息

Department of Physics, Syracuse University , 201 Physics Building, Syracuse, New York 13244-1130, United States.

Structural Biology, Biochemistry, and Biophysics Program, Syracuse University , 111 College Place, Syracuse, New York 13244-4100, United States.

出版信息

J Phys Chem B. 2017 Nov 9;121(44):10228-10241. doi: 10.1021/acs.jpcb.7b08045. Epub 2017 Oct 31.

Abstract

Although fundamentally significant in structural, chemical, and membrane biology, the interfacial protein-detergent complex (PDC) interactions have been modestly examined because of the complicated behavior of both detergents and membrane proteins in aqueous phase. Membrane proteins are prone to unproductive aggregation resulting from poor detergent solvation, but the participating forces in this phenomenon remain ambiguous. Here, we show that using rational membrane protein design, targeted chemical modification, and steady-state fluorescence polarization spectroscopy, the detergent desolvation of membrane proteins can be quantitatively evaluated. We demonstrate that depleting the detergent in the sample well produced a two-state transition of membrane proteins between a fully detergent-solvated state and a detergent-desolvated state, the nature of which depended on the interfacial PDC interactions. Using a panel of six membrane proteins of varying hydrophobic topography, structural fingerprint, and charge distribution on the solvent-accessible surface, we provide direct experimental evidence for the contributions of the electrostatic and hydrophobic interactions to the protein solvation properties. Moreover, all-atom molecular dynamics simulations report the major contribution of the hydrophobic forces exerted at the PDC interface. This semiquantitative approach might be extended in the future to include studies of the interfacial PDC interactions of other challenging membrane protein systems of unknown structure. This would have practical importance in protein extraction, solubilization, stabilization, and crystallization.

摘要

尽管界面蛋白-去污剂复合物(PDC)相互作用在结构、化学和膜生物学方面具有根本意义,但由于水相中的去污剂和膜蛋白的复杂行为,其相互作用仅得到了适度的研究。膜蛋白容易因去污剂溶解不良而产生非生产性聚集,但参与这种现象的力仍然不清楚。在这里,我们展示了通过合理的膜蛋白设计、靶向化学修饰和稳态荧光偏振光谱学,可以定量评估膜蛋白的去污剂去溶剂化。我们证明,耗尽样品槽中的去污剂会导致膜蛋白在完全去污剂溶剂化状态和去污剂去溶剂化状态之间发生两态转变,其性质取决于界面 PDC 相互作用。使用一组六个具有不同疏水性拓扑结构、结构指纹和溶剂可及表面电荷分布的膜蛋白,我们提供了直接的实验证据,证明静电和疏水相互作用对蛋白质溶剂化性质的贡献。此外,全原子分子动力学模拟报告了 PDC 界面上施加的疏水力的主要贡献。这种半定量方法将来可能会扩展到研究其他具有未知结构的具有挑战性的膜蛋白系统的界面 PDC 相互作用。这在蛋白质提取、溶解、稳定和结晶方面具有实际意义。

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