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六钨碲酸盐(VI)在蛋白质结晶过程中诱导显著熵增的潜力。

The potential of hexatungstotellurate(VI) to induce a significant entropic gain during protein crystallization.

作者信息

Molitor Christian, Bijelic Aleksandar, Rompel Annette

机构信息

Universität Wien, Fakultät für Chemie, Institut für Biophysikalische Chemie, Althanstrasse 14, Wien 1090, Austria.

出版信息

IUCrJ. 2017 Oct 27;4(Pt 6):734-740. doi: 10.1107/S2052252517012349. eCollection 2017 Nov 1.

Abstract

The limiting factor in protein crystallography is still the production of high-quality crystals. In this regard, the authors have recently introduced hexatungstotellurate(VI) (TEW) as a new crystallization additive, which proved to be successful within the liquid-liquid phase separation (LLPS) zone. Presented here are comparative crystal structure analyses revealing that protein-TEW binding not only induces and stabilizes crystal contacts, but also exhibits a significant impact on the solvent-driven crystallization entropy, which is the driving force for the crystallization process. Upon the formation of TEW-mediated protein-protein contacts, the release of water molecules from the hydration shells of both molecules, TEW and the protein, causes a reduced solvent-accessible surface area, leading to a significant gain in solvent entropy. Based on the crystal structures of aurone synthase (in the presence and absence of TEW), insights have also been provided into the formation of a metastable LLPS, which is caused by the formation of protein clusters, representing an ideal starting point in protein crystallization. The results strongly encourage the classification of TEW as a valuable crystallization additive.

摘要

蛋白质晶体学中的限制因素仍然是高质量晶体的生成。在这方面,作者最近引入了六钨酸碲酸盐(VI)(TEW)作为一种新的结晶添加剂,事实证明它在液-液相分离(LLPS)区域内是成功的。本文展示了对比晶体结构分析,结果表明蛋白质与TEW的结合不仅能诱导并稳定晶体接触,还对溶剂驱动的结晶熵有显著影响,而结晶熵是结晶过程的驱动力。在形成TEW介导的蛋白质-蛋白质接触时,TEW和蛋白质这两个分子的水化层中的水分子释放出来,导致溶剂可及表面积减小,从而使溶剂熵显著增加。基于橙酮合酶的晶体结构(有无TEW存在的情况),还对由蛋白质簇形成引起的亚稳LLPS的形成提供了见解,蛋白质簇的形成是蛋白质结晶的理想起点。这些结果有力地促使将TEW归类为一种有价值的结晶添加剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5314/5668858/0511b9e9fc74/m-04-00734-fig1.jpg

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