首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Lysozyme contamination facilitates crystallization of a heterotrimeric cortactin–Arg–lysozyme complex
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Lysozyme contamination facilitates crystallization of a heterotrimeric cortactin–Arg–lysozyme complex

机译:溶菌酶污染促进异三聚体coractactin–Arg–溶菌酶复合物的结晶

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摘要

Crystallization of contaminating proteins is a frequently encountered problem for macromolecular crystallographers. In this study, an attempt was made to obtain a binary cocrystal structure of the SH3 domain of cortactin and a 17-­residue peptide from the Arg nonreceptor tyrosine kinase encompassing a PxxPxxPxxP (PxxP1) motif. However, cocrystals could only be obtained in the presence of trace amounts of a contaminating protein. A structure solution obtained by molecular replacement followed by ARP/wARP automatic model building allowed a ‘sequence-by-crystallography’ approach to discover that the contaminating protein was lysozyme. This 1.65 Å resolution crystal structure determination of a 1:1:1 heterotrimeric complex of Arg, cortactin and lysozyme thus provides an unusual ‘caveat emptor’ warning of the dangers that underpurified proteins harbor for macromolecular crystallographers.
机译:污染性蛋白质的结晶是大分子结晶学家经常遇到的问题。在这项研究中,试图从包含PxxPxxPxxP(PxxP1)基序的Arg非受体酪氨酸激酶中获得cortactin的SH3结构域和17-残基肽的二元共晶体结构。然而,共晶只能在痕量污染蛋白的存在下获得。通过分子置换,然后通过ARP / wARP自动模型构建获得的结构解决方案,允许采用“按晶体测序”的方法来发现污染的蛋白是溶菌酶。这种1.65Å分辨率的晶体结构确定了Arg,皮质激素和溶菌酶的1:1:1异源三聚体复合物,从而为大分子晶体学家提供了一种异常的“空洞吸空”警告,提示过纯的蛋白质存在危险。

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