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Automated high-throughput platform for protein solubility screening using a split-GFP system

机译:自动化的高通量平台使用split-GFP系统进行蛋白质溶解度筛选

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摘要

Overproduction of soluble and stable proteins for functional and structural studies is a major bottleneck for structural genomics programs and traditional biochemistry laboratories. Many high-payoff proteins that are important in various biological processes are “difficult to handle” as protein reagents in their native form. We have recently made several advances in enabling biochemical technologies for improving protein stability (), allowing stratagems for efficient protein domain trapping, solubility-improving mutations, and finding protein folding partners. In particular split-GFP protein tags are a very powerful tool for detection of stable protein domains. Soluble, stable proteins tagged with the 15 amino acid GFP fragment (amino acids 216–228) can be detected in vivo and in vitro using the engineered GFP 1–10 “detector” fragment (amino acids 1–215). If the small tag is accessible, the detector fragment spontaneously binds resulting in fluorescence. Here, we describe our current and on-going efforts to move this process from the bench (manual sample manipulation) to an automated, high-throughput, liquid-handling platform. We discuss optimization and validation of bacterial culture growth, lysis protocols, protein extraction, and assays of soluble and insoluble protein in multiple 96 well plate format. The optimized liquid-handling protocol can be used for rapid determination of the optimal, compact domains from single ORFS, collections of ORFS, or cDNA libraries.
机译:用于功能和结构研究的可溶性和稳定蛋白的过量生产是结构基因组计划和传统生物化学实验室的主要瓶颈。在各种生物学过程中很重要的许多高回报蛋白质,以其天然形式的蛋白质试剂“难以处理”。我们最近在启用生物化学技术以改善蛋白质稳定性方面取得了一些进展(),允许策略有效地捕获蛋白质结构域,改善溶解度的突变并找到蛋白质折叠伙伴。特别是,GFP分离蛋白标签是检测稳定蛋白结构域的非常强大的工具。标记有15个氨基酸的GFP片段(氨基酸216-228)的可溶性,稳定蛋白可以使用工程改造的GFP 1-10“检测器”片段(氨基酸1-215)在体内和体外进行检测。如果可访问小标签,则检测器片段会自发结合,从而产生荧光。在这里,我们描述了我们当前和正在进行的将这一过程从工作台(手动样品处理)转移到自动化,高通量液体处理平台的努力。我们讨论了细菌培养生长,裂解方案,蛋白质提取以及多个96孔板形式的可溶性和不溶性蛋白质测定的优化和验证。优化的液体处理方案可用于快速确定单个ORFS,ORFS集合或cDNA文库中的最佳紧凑结构域。

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