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Chaperone-Assisted Crystallography with DARPins

机译:DARPins的分子伴侣辅助晶体学

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摘要

The structure of proteins that are difficult to crystallize can often be solved by forming a noncovalent complex with a helper protein-a crystallization "chaperone." Although several such applications have been described to date, their handling usually is still very laborious. A valuable addition to the present repertoire of binding proteins is the recently developed designed ankyrin repeat protein (DARPin) technology. DARPins are built based on the natural ankyrin repeat protein fold with randomized surface residue positions allowing specific binding to virtually any target protein. The broad potential of these binding proteins for X-ray crystallography is illustrated by five cocrystal structures that have been determined recently comprising target proteins from distinct families, namely a sugar binding protein, two kinases, a caspase, and a membrane protein. This article reviews the opportunities of this technology for structural biology and the structural aspects of the DARPin-protein complexes.
机译:难以结晶的蛋白质结构通常可以通过与辅助蛋白质形成非共价复合物(结晶“伴侣”)来解决。尽管迄今为止已经描述了几种这样的应用,但是它们的处理通常仍然非常费力。最近开发的设计的锚蛋白重复蛋白(DARPin)技术是当前结合蛋白库的重要补充。 DARPins基于天然锚蛋白重复蛋白折叠以及随机的表面残基位置构建而成,从而可以与几乎任何目标蛋白特异性结合。这些结合蛋白在X射线晶体学上的巨大潜力由最近确定的五个共晶体结构得以说明,该结构包含来自不同家族的靶蛋白,即糖结合蛋白,两个激酶,半胱天冬酶和膜蛋白。本文概述了该技术在结构生物学和DARPin蛋白复合物的结构方面的机遇。

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