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Phase knowledge enables rational screens for protein crystallization

机译:相知识可对蛋白质结晶进行合理的筛选

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摘要

We show that knowledge of the phase behavior of a protein allows one to create a rational screen that increases the success rate of crystallizing challenging proteins. The strategy is based on using microfluidics to perform large numbers of protein solubility experiments across many different chemical conditions to identify reagents for crystallization experiments. Phase diagrams were generated for the identified reagents and used to design customized crystallization screens for every protein. This strategy was applied with a 75% success rate to the crystallization of 12 diverse proteins, most of which failed to crystallize when using traditional techniques. The overall diffraction success rate was 33%, about double what was achieved with conventional automation in large-scale protein structure consortia. The higher diffraction success rates are achieved by designing customized crystallization screens using the phase behavior information for each target. The identification of reagents based on an understanding of protein solubility and the use of phase diagrams in the design of individualized crystallization screens therefore promotes high crystallization rates and the production of diffraction-quality crystals.
机译:我们表明,对蛋白质的相行为的了解使人们能够创建一种合理的筛选,从而增加了结晶具有挑战性的蛋白质的成功率。该策略基于使用微流体技术在许多不同化学条件下进行大量蛋白质溶解性实验,以鉴定用于结晶实验的试剂。为鉴定出的试剂生成相图,并用于为每种蛋白质设计定制的结晶筛选。该策略以12%的成功率75%应用于12种蛋白质的结晶,其中大多数蛋白质在使用传统技术时未能结晶。总的衍射成功率是33%,大约是常规自动化在大规模蛋白质结构联盟中所获得的两倍。通过使用每个靶材的相行为信息设计定制的结晶屏,可以实现更高的衍射成功率。因此,基于对蛋白质溶解度的理解以及在单独的结晶筛的设计中使用相图来鉴定试剂,将促进高结晶速率和衍射级晶体的生产。

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