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Immobilized metal-affinity chromatography protein-recovery screening is predictive of crystallographic structure success

机译:固定化金属亲和层析蛋白回收筛选可预测晶体结构成功

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摘要

The recombinant expression of soluble proteins in Escherichia coli continues to be a major bottleneck in structural genomics. The establishment of reliable protocols for the performance of small-scale expression and solubility testing is an essential component of structural genomic pipelines. The SSGCID Protein Production Group at the University of Washington (UW-PPG) has developed a high-throughput screening (HTS) protocol for the measurement of protein recovery from immobilized metal-affinity chromatography (IMAC) which predicts successful purification of hexahistidine-tagged proteins. The protocol is based on manual transfer of samples using multichannel pipettors and 96-well plates and does not depend on the use of robotic platforms. This protocol has been applied to evaluate the expression and solubility of more than 4000 proteins expressed in E. coli. The UW-PPG also screens large-scale preparations for recovery from IMAC prior to purification. Analysis of these results show that our low-cost non-automated approach is a reliable method for the HTS demands typical of large structural genomic projects. This paper provides a detailed description of these protocols and statistical analysis of the SSGCID screening results. The results demonstrate that screening for proteins that yield high recovery after IMAC, both after small-scale and large-scale expression, improves the selection of proteins that can be successfully purified and will yield a crystal structure.
机译:可溶性蛋白在大肠杆菌中的重组表达仍然是结构基因组学的主要瓶颈。建立用于进行小规模表达和溶解度测试的可靠协议是结构基因组学管道的重要组成部分。华盛顿大学的SSGCID蛋白质生产小组(UW-PPG)已开发出一种高通量筛选(HTS)方案,用于测量固定化金属亲和色谱(IMAC)的蛋白质回收率,该方法可预测成功纯化六组氨酸标签的蛋白质。该协议基于使用多通道移液器和96孔板的手动样品转移,并且不依赖于机器人平台的使用。该方案已应用于评估在大肠杆菌中表达的4000多种蛋白质的表达和溶解性。 UW-PPG还筛选了大型制剂,以便在纯化前从IMAC中回收。对这些结果的分析表明,对于大型结构基因组项目中常见的HTS需求,我们的低成本非自动化方法是一种可靠的方法。本文提供了这些协议的详细说明以及SSGCID筛选结果的统计分析。结果表明,在小规模和大规模表达后,筛选在IMAC之后产生高回收率的蛋白质,可以改善对可以成功纯化并产生晶体结构的蛋白质的选择。

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