首页> 外文期刊>Acta crystallographica. Section D, Structural biology. >Introducing site‐specific cysteines into nanobodies for mercury labelling allows de novo de novo phasing of their crystal structures
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Introducing site‐specific cysteines into nanobodies for mercury labelling allows de novo de novo phasing of their crystal structures

机译:介绍地理位置特殊的半胱氨酸nanobodies水星标签允许新创新创定相的晶体结构

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The generation of high‐quality protein crystals and the loss of phase information during an X‐ray crystallography diffraction experiment represent the major bottlenecks in the determination of novel protein structures. A generic method for introducing Hg atoms into any crystal independent of the presence of free cysteines in the target protein could considerably facilitate the process of obtaining unbiased experimental phases. Nanobodies (single‐domain antibodies) have recently been shown to promote the crystallization and structure determination of flexible proteins and complexes. To extend the usability of nanobodies for crystallographic work, variants of the Nb36 nanobody with a single free cysteine at one of four framework‐residue positions were developed. These cysteines could be labelled with fluorophores or Hg. For one cysteine variant (Nb36‐C85) two nanobody structures were experimentally phased using single‐wavelength anomalous dispersion (SAD) and single isomorphous replacement with anomalous signal (SIRAS), taking advantage of radiation‐induced changes in Cys–Hg bonding. Importantly, Hg labelling influenced neither the interaction of Nb36 with its antigen complement C5 nor its structure. The results suggest that Cys–Hg‐labelled nanobodies may become efficient tools for obtaining de novo phase information during the structure determination of nanobody–protein complexes.
机译:高质量蛋白质晶体的生成和在一个X射线相位信息晶体学衍射实验代表的主要瓶颈的决心小说蛋白质结构。汞原子引入任何水晶独立自由的存在半胱氨酸的目标蛋白质可以大大促进这个过程获得公正的实验阶段。Nanobodies(单量域抗体)最近被证明能够促进结晶和结构的确定灵活的蛋白质复合物。可用性的晶体nanobodies工作,变异的Nb36 nanobody单免费的半胱氨酸的四个框架残渣职位发展。标签与荧光团或Hg。两个nanobody半胱氨酸变体(Nb36 C85应承担的)结构实验分阶段使用单波长反常色散(SAD)和单一的同形替代异常信号(SIRAS),利用辐射诱导Cys-Hg成键的变化。重要的是,Hg标签既没有影响互动Nb36抗原补充C5和它的结构。Cys-Hg贴上nanobodies可能变得高效获取新创相位信息的工具在结构的决心nanobody-protein复合物。

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