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Multiple Motif Scanning to Identify Methyltransferases from the Yeast Proteome

机译:多个母题扫描以鉴定酵母蛋白质组中的甲基转移酶

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摘要

A new program (Multiple Motif Scanning) was developed to scan the Saccharomyces cerevisiae proteome for Class I S-adenosylmethionine-dependent methyltransferases. Conserved Motifs I, Post I, II, and III were identified and expanded in known methyltransferases by primary sequence and secondary structural analysis through hidden Markov model profiling of both a yeast reference database and a reference database of methyltransferases with solved three-dimensional structures. The roles of the conserved amino acids in the four motifs of the methyltransferase structure and function were then analyzed to expand the previously defined motifs. Fisher-based negative log statistical matrix sets were developed from the prevalence of amino acids in the motifs. Multiple Motif Scanning is able to scan the proteome and score different combinations of the top fitting sequences for each motif. In addition, the program takes into account the conserved number of amino acids between the motifs. The output of the program is a ranked list of proteins that can be used to identify new methyltransferases and to reevaluate the assignment of previously identified putative methyltransferases. The Multiple Motif Scanning program can be used to develop a putative list of enzymes for any type of protein that has one or more motifs conserved at variable spacings and is freely available (). Finally hidden Markov model profile clustering analysis was used to subgroup Class I methyltransferases into groups that reflect their methyl-accepting substrate specificity.
机译:开发了一个新程序(多重基序扫描)来扫描酿酒酵母蛋白质组中的I类S-腺苷甲硫氨酸依赖性甲基转移酶。通过酵母序列参考数据库和甲基转移酶参考数据库的隐马尔可夫模型分析,通过一级序列和二级结构分析,鉴定了保守基序I,I,II和III,并在已知的甲基转移酶中进行了扩展,并解析了三维结构。然后分析了保守氨基酸在甲基转移酶结构和功能的四个基序中的作用,以扩展先前定义的基序。从基元中氨基酸的普遍性发展出基于Fisher的负对数统计矩阵集。多个母题扫描能够扫描蛋白质组并对每个基序的最合适序列的不同组合进行评分。另外,该程序考虑了基序之间氨基酸的保守数目。该程序的输出是可用于识别新的甲基转移酶并重新评估先前鉴定的假定甲基转移酶的蛋白质排序列表。可以使用Multiple Motif Scanning程序为任何类型的蛋白质建立推定的酶列表,这些蛋白质具有一个或多个以可变间隔保守的基序并且可以免费获得()。最后,使用隐式马尔可夫模型轮廓聚类分析将I类甲基转移酶分为可反映其甲基接受底物特异性的组。

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