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Fishing new proteins in the twilight zone of genomes: The test case of outer membrane proteins in Escherichia coli K12, Escherichia coli O157:H7, and other Gram-negative bacteria

机译:在基因组的暮光之城中捕捞新蛋白质:大肠杆菌K12,大肠杆菌O157:H7和其他革兰氏阴性细菌中外膜蛋白质的测试案例

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摘要

We address the problem of clustering the whole protein content of genomes into three different categories—globular, all-α, and all-β membrane proteins—with the aim of fishing new membrane proteins in the pool of nonannotated proteins (twilight zone). The focus is then mainly on outer membrane proteins. This is performed by using an integrated suite of programs (Hunter) specifically developed for predicting the occurrence of signal peptides in proteins of Gram-negative bacteria and the topography of all-α and all-β membrane proteins. Hunter is tested on the well and partially annotated proteins (2160 and 760, respectively) of Escherichia coli K 12 scoring as high as 95.6% in the correct assignment of each chain to the category. Of the remaining 1253 nonannotated sequences, 1099 are predicted globular, 136 are all-α, and 18 are all-β membrane proteins. In Escherichia coli 0157:H7 we filtered 1901 nonannotated proteins. Our analysis classifies 1564 globular chains, 327 inner membrane proteins, and 10 outer membrane proteins. With Hunter, new membrane proteins are added to the list of putative membrane proteins of Gram-negative bacteria. The content of outer membrane proteins per genome (nine are analyzed) ranges from 1.5% to 2.4%, and it is one order of magnitude lower than that of inner membrane proteins. The finding is particularly relevant when it is considered that this is the first large-scale analysis based on validated tools that can predict the content of outer membrane proteins in a genome and can allow cross-comparison of the same protein type between different species.
机译:我们解决了将基因组的整个蛋白质含量分为三类的问题,即球形,全α和全β膜蛋白,目的是在非注释蛋白池(暮色区)中捕捞新的膜蛋白。然后,重点主要放在外膜蛋白上。这是通过使用专门开发用于预测革兰氏阴性细菌蛋白质中信号肽的出现以及全α和全β膜蛋白的拓扑结构的完整程序套件(Hunter)执行的。在正确识别每条链的大肠杆菌K 12上,Hunter进行了测试,结果表明大肠杆菌K 12的孔蛋白和部分注释蛋白(分别为2160和760)得分高达95.6%。在其余的1253个非注释序列中,有1099个预测为球形,136个为全α,18个为全β膜蛋白。在大肠杆菌0157:H7中,我们过滤了1901个非注释蛋白。我们的分析对1564个球状链,327个内膜蛋白和10个外膜蛋白进行了分类。使用Hunter,新的膜蛋白被添加到革兰氏阴性细菌的推定膜蛋白列表中。每个基因组的外膜蛋白含量(分析了九个)在1.5%至2.4%的范围内,比内膜蛋白的含量低一个数量级。当认为这是首次基于经过验证的工具进行的大规模分析时,这一发现特别有意义,该工具可以预测基因组中外膜蛋白的含量,并且可以使不同物种之间的相同蛋白类型进行交叉比较。

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