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Assembly of Protein-RNA Complexes Using Natural RNA and Mutant Forms of an RNA Cytosine Methyltransferase

机译:组装蛋白质-RNA复合物使用天然RNA和RNA胞嘧啶甲基转移酶的突变体形式。

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This work reveals that mutant forms of RNA methyltransferases that form 5-methylcytosine (m~5C) have characteristics that may make them useful for biomacromolecular assembly.The experiments utilized bacterially expressed Trm4p,a tRNA methyltransferase cloned from Saccharomyces cerevisiae.Like DNA m~5C methyltransferases,Trm4p mediates methylation using a covalent intermediate,which would allow Trm4p to be trapped as a stable protein-RNA complex when the substrate RNA contains a modified cytosine base such as 5-fluorocytosine.However,mutant forms of Trm4p are identified that fail to release RNA resulting in the formation of denaturant stable methyltransferase-RNA complexes that contain only natural nucleotides.The ability to form stable complexes with natural RNA gives these mutant forms of Trm4p greater potential versatility for biomacromolecule construction applications than the wild-type Trm4p enzyme or DNA methyltransferases for which the trapping of the covalent intermediate requires the presence of a nucleotide analogue at the site of modification.
机译:这项工作揭示了形成5-甲基胞嘧啶(m〜5C)的RNA甲基转移酶的突变形式具有使其可能用于生物大分子装配的特性。该实验利用细菌表达的Trm4p,一种从酿酒酵母中克隆的tRNA甲基转移酶。甲基转移酶Trm4p使用共价中间体介导甲基化,当底物RNA含有修饰的胞嘧啶碱基(例如5-氟胞嘧啶)时,Trm4p可以作为稳定的蛋白质-RNA复合物被捕获。释放RNA导致形成仅包含天然核苷酸的变性稳定甲基转移酶-RNA复合物。与天然RNA形成稳定复合物的能力使Trm4p的这些突变形式比野生型Trm4p酶或DNA在生物大分子构建应用中具有更大的潜在多功能性需要捕获共价中间体的甲基转移酶在修饰位点存在核苷酸类似物。

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