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Structure and reconstitution of yeast Mpp6-nuclear exosome complexes reveals that Mpp6 stimulates RNA decay and recruits the Mtr4 helicase

机译:酵母Mpp6-核外泌体复合物的结构和重构表明Mpp6刺激RNA衰变并募集Mtr4解旋酶

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摘要

Nuclear RNA exosomes catalyze a range of RNA processing and decay activities that are coordinated in part by cofactors, including Mpp6, Rrp47, and the Mtr4 RNA helicase. Mpp6 interacts with the nine-subunit exosome core, while Rrp47 stabilizes the exoribonuclease Rrp6 and recruits Mtr4, but it is less clear if these cofactors work together. Using biochemistry with Saccharomyces cerevisiae proteins, we show that Rrp47 and Mpp6 stimulate exosome-mediated RNA decay, albeit with unique dependencies on elements within the nuclear exosome. Mpp6-exosomes can recruit Mtr4, while Mpp6 and Rrp47 each contribute to Mtr4-dependent RNA decay, with maximal Mtr4-dependent decay observed with both cofactors. The 3.3 Å structure of a twelve-subunit nuclear Mpp6 exosome bound to RNA shows the central region of Mpp6 bound to the exosome core, positioning its Mtr4 recruitment domain next to Rrp6 and the exosome central channel. Genetic analysis reveals interactions that are largely consistent with our model.>DOI:
机译:核RNA外泌体催化一系列RNA加工和衰变活动,这些活动部分由辅因子(包括Mpp6,Rrp47和Mtr4 RNA解旋酶)协调。 Mpp6与九个亚基外泌体核心相互作用,而Rrp47稳定外切核糖核酸酶Rrp6并募集Mtr4,但尚不清楚这些辅因子是否共同起作用。使用酿酒酵母蛋白的生物化学,我们显示Rrp47和Mpp6刺激外泌体介导的RNA衰变,尽管对核外泌体中的元素有独特的依赖性。 Mpp6-外来体可以募集Mtr4,而Mpp6和Rrp47各自促成Mtr4依赖性RNA衰变,两种辅因子均观察到最大的Mtr4依赖性衰变。与RNA结合的十二个亚基Mpp6核外泌体的3.3Å结构显示,Mpp6的中心区域与外泌体核心结合,将其Mtr4募集域定位在Rrp6和外泌体中央通道旁边。遗传分析揭示了与我们的模型基本一致的相互作用。> DOI:

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