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Expression screening, protein purification and NMR analysis of human protein domains for structural genomics

机译:用于结构基因组学的人蛋白质域的表达筛选,蛋白质纯化和NMR分析

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Structural genomics, the determination of protein structures on a genome-wide scale, is still in its infancy for eukaryotes due to the number and size of their genes. Low protein expression and solubility of eukaryotic geneproducts are the major bottlenecks in high-throughput (HTP) recombinant protein production with the E. coli expression systems. To circumvent this problem we decided to focus on separate protein domains. We describe here a fast microtiterplate based, expression and solubility screening procedure, using a combination of in vitro and in vivo expression, and purification with nickel-NTA magnetic beads. All steps are optimized for automatic HTP processing using a liquid handling station. Furthermore, large-scale expression and protein purification conditions are optimized, permitting the purification of 24 protein samples per week. We further show that results obtained from the expression screening can be extrapolated to the production of protein samples for NMR. Starting with 81 cloned human protein domains, in vivo expression was detected in 54 cases, and from 28 of those milligrams of protein were purified. An informative HSQC spectrum was recorded for 18 proteins (22%), half of which were indicative of a folded protein. The success rate and quality of the HSQC spectra suggest that the domain approach holds promise for human proteins.
机译:结构基因组学,即在全基因组范围内确定蛋白质结构的方法,由于其基因的数量和大小,对于真核生物仍处于起步阶段。大肠杆菌表达系统在高通量(HTP)重组蛋白生产中的主要瓶颈是低蛋白表达和真核基因产物的溶解度。为了避免这个问题,我们决定将重点放在单独的蛋白质结构域上。我们在这里描述了一种基于快速微量滴定板的表达和溶解度筛选程序,结合了体外和体内表达,并用镍-NTA磁珠纯化。所有步骤均经过优化,可使用液体处理站进行自动HTP处理。此外,优化了大规模表达和蛋白质纯化条件,允许每周纯化24个蛋白质样品。我们进一步表明,从表达筛选中获得的结果可以外推到NMR蛋白质样品的生产中。从81个克隆的人类蛋白质结构域开始,在54例患者中检测到了体内表达,并从其中的28毫克蛋白质中纯化了蛋白质。记录了18种蛋白质(22%)的内容丰富的HSQC光谱,其中一半表示蛋白质折叠。 HSQC谱图的成功率和质量表明,域方法对人类蛋白质具有广阔的前景。

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