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Hen Egg-White Lysozyme Crystallisation: Protein Stacking and Structure Stability Enhanced by a Tellurium(VI)-Centred Polyoxotungstate

机译:母鸡蛋清溶菌酶的结晶:碲(VI)为中心的聚氧钨酸盐增强蛋白质堆积和结构稳定性。

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摘要

As synchrotron radiation becomes more intense, detectors become faster and structure-solving software becomes more elaborate, obtaining single crystals suitable for data collection is now the bottleneck in macromolecular crystallography. Hence, there is a need for novel and advanced crystallisation agents with the ability to crystallise proteins that are otherwise challenging. Here, an Anderson–Evans-type polyoxometalate (POM), specifically Na6[TeW6O24]⋅22 H2O (TEW), is employed as a crystallisation additive. Its effects on protein crystallisation are demonstrated with hen egg-white lysozyme (HEWL), which co-crystallises with TEW in the vicinity (or within) the liquid–liquid phase separation (LLPS) region. The X-ray structure (PDB ID: 4PHI) determination revealed that TEW molecules are part of the crystal lattice, thus demonstrating specific binding to HEWL with electrostatic interactions and hydrogen bonds. The negatively charged TEW polyoxotungstate binds to sites with a positive electrostatic potential located between two (or more) symmetry-related protein chains. Thus, TEW facilitates the formation of protein–protein interfaces of otherwise repulsive surfaces, and thereby the realisation of a stable crystal lattice. In addition to retaining the isomorphicity of the protein structure, the anomalous scattering of the POMs was used for macromolecular phasing. The results suggest that hexatungstotellurate(VI) has great potential as a crystallisation additive to promote both protein crystallisation and structure elucidation.
机译:随着同步加速器辐射变得越来越强烈,检测器变得越来越快,结构解析软件也变得越来越复杂,获取适合于数据收集的单晶成为了大分子晶体学的瓶颈。因此,需要具有使蛋白质结晶的能力的新颖的和先进的结晶剂,否则该蛋白质具有挑战性。在这里,安德森-埃文斯型多金属氧酸盐(POM),特别是Na6 [TeW6O24]·22 H2O(TEW),被用作结晶添加剂。鸡蛋清溶菌酶(HEWL)证明了其对蛋白质结晶的影响,该蛋白与液-液相分离(LLPS)区域附近(或内部)的TEW共结晶。 X射线结构(PDB ID:4PHI)的测定表明,TEW分子是晶格的一部分,因此证明了通过静电相互作用和氢键与HEWL的特异性结合。带负电荷的TEW多氧钨酸盐与位于两个(或多个)对称相关蛋白链之间的正静电势位结合。因此,TEW促进了排斥表面的蛋白质-蛋白质界面的形成,从而实现了稳定的晶格。除了保留蛋白质结构的同构性外,POM的异常散射还用于大分子定相。结果表明六钨硬脂酸酯(VI)作为促进蛋白质结晶和结构阐明的结晶添加剂具有巨大潜力。

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