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Comprehensive in silico mutagenesis highlights functionally important residues in proteins

机译:全面的计算机诱变突出了蛋白质中功能上重要的残基

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摘要

>Motivation: Mutating residues into alanine (alanine scanning) is one of the fastest experimental means of probing hypotheses about protein function. Alanine scans can reveal functional hot spots, i.e. residues that alter function upon mutation. In vitro mutagenesis is cumbersome and costly: probing all residues in a protein is typically as impossible as substituting by all non-native amino acids. In contrast, such exhaustive mutagenesis is feasible in silico.>Results: Previously, we developed SNAP to predict functional changes due to non-synonymous single nucleotide polymorphisms. Here, we applied SNAP to all experimental mutations in the ASEdb database of alanine scans; we identified 70% of the hot spots (≥1 kCal/mol change in binding energy); more severe changes were predicted more accurately. Encouraged, we carried out a complete all-against-all in silico mutagenesis for human glucokinase. Many of the residues predicted as functionally important have indeed been confirmed in the literature, others await experimental verification, and our method is ready to aid in the design of in vitro mutagenesis.>Availability: ASEdb and glucokinase scores are available at . For submissions of large/whole proteins for processing please contact the author.>Contact:
机译:>动机:将残基突变为丙氨酸(丙氨酸扫描)是探究有关蛋白质功能假设的最快实验方法之一。丙氨酸扫描可以揭示功能性热点,即在突变后会改变功能的残基。体外诱变繁琐且成本高昂:探测蛋白质中的所有残基一般都不可能被所有非天然氨基酸取代。相反,这种详尽的诱变在计算机上是可行的。>结果:以前,我们开发了SNAP来预测由于非同义单核苷酸多态性引起的功能变化。在这里,我们将SNAP应用于丙氨酸扫描的ASEdb数据库中的所有实验突变;我们确定了70%的热点(结合能变化≥1 kCal / mol);更准确地预测更严重的变化。受到鼓舞,我们对人的葡萄糖激酶进行了完全反对所有的计算机诱变。许多预测为功能重要的残基确实已在文献中得到证实,其他残基正在等待实验验证,我们的方法已准备好帮助设计体外诱变。>可用性: ASEdb和葡萄糖激酶评分为可在下载。要提交大/全蛋白进行处理,请与作者联系。>联系方式:

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