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The crystal structure of Mtr4 reveals a novel arch domain required for rRNA processing

机译:Mtr4的晶体结构揭示了rRNA加工所需的新型拱结构域

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摘要

The essential RNA helicase, Mtr4, performs a critical role in RNA processing and degradation as an activator of the nuclear exosome. The molecular basis for this vital function is not understood and detailed analysis is significantly limited by the lack of structural data. In this study, we present the crystal structure of Mtr4. The structure reveals a new arch-like domain that is specific to Mtr4 and Ski2 (the cytosolic homologue of Mtr4). In vivo and in vitro analyses demonstrate that the Mtr4 arch domain is required for proper 5.8S rRNA processing, and suggest that the arch functions independently of canonical helicase activity. In addition, extensive conservation along the face of the putative RNA exit site highlights a potential interface with the exosome. These studies provide a molecular framework for understanding fundamental aspects of helicase function in exosome activation, and more broadly define the molecular architecture of Ski2-like helicases.
机译:必需的RNA解旋酶Mtr4作为核外泌体的激活剂,在RNA加工和降解中起关键作用。尚不清楚该重要功能的分子基础,缺乏结构数据严重限制了详细分析。在这项研究中,我们介绍了Mtr4的晶体结构。该结构揭示了一个新的类似于Mtr4和Ski2(Mtr4的胞质同源物)的拱状结构域。体内和体外分析表明,正确的5.8S rRNA加工需要Mtr4拱结构域,并表明该拱功能独立于经典解旋酶活性。另外,沿推定的RNA出口位点的表面的广泛保守突出了与外泌体的潜在界面。这些研究提供了一个分子框架,用于理解外来体激活中解旋酶功能的基本方面,并且更广泛地定义了Ski2样解旋酶的分子结构。

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