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RNA guanine-7 methyltransferase catalyzes the methylation of cytoplasmically recapped RNAs

机译:RNA鸟嘌呤7甲基转移酶催化细胞质捕获的RNA的甲基化

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摘要

Cap homeostasis is a cyclical process of decapping and recapping that impacts a portion of the mRNA transcriptome. The metastable uncapped forms of recapping targets redistribute from polysomes to non-translating mRNPs, and recapping is all that is needed for their return to the translating pool. Previous work identified a cytoplasmic capping metabolon consisting of capping enzyme (CE) and a 5′-monophosphate kinase bound to adjacent domains of Nck1. The current study identifies the canonical cap methyltransferase (RNMT) as the enzyme responsible for guanine-N7 methylation of recapped mRNAs. RNMT binds directly to CE, and its presence in the cytoplasmic capping complex was demonstrated by pulldown assays, gel filtration and proximity-dependent biotinylation. The latter also identified the RNMT cofactor RAM, whose presence is required for cytoplasmic cap methyltransferase activity. These findings guided development of an inhibitor of cytoplasmic cap methylation whose action resulted in a selective decrease in levels of recapped mRNAs.
机译:瓶盖稳态是去盖和重新盖盖的周期性过程,会影响部分mRNA转录组。重新固定靶标的亚稳态未封端形式从多核糖体重新分布到非翻译mRNPs,重新获得返回到翻译池所需的全部操作。先前的工作鉴定了由加帽酶(CE)和与Nck1的相邻域结合的5'-单磷酸激酶组成的细胞质加帽代谢产物。当前的研究确定规范帽甲基转移酶(RNMT)是负责被检出的mRNA的鸟嘌呤N7甲基化的酶。 RNMT直接与CE结合,并通过下拉测定,凝胶过滤和邻近依赖性生物素化证明了其在细胞质加帽复合物中的存在。后者还确定了RNMT辅因子RAM,其存在是胞质帽甲基转移酶活性所必需的。这些发现指导了细胞质帽甲基化抑制剂的开发,该抑制剂的作用导致选择性降低recaped mRNA的水平。

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