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Structural insights into the interaction of the nuclear exosome helicase Mtr4 with the preribosomal protein Nop53

机译:结构见解核外虫螺旋酶MTR4与PRERIBOSOMAL蛋白NOP53的相互作用

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摘要

The nuclear exosome and the associated RNA helicase Mtr4 participate in the processing of several ribonucleoprotein particles (RNP), including the maturation of the large ribosomal subunit (60S). S. cerevisiae Mtr4 interacts directly with Nop53, a ribosomal biogenesis factor present in late pre-60S particles containing precursors of the 5.8S rRNA. The Mtr4-Nop53 interaction plays a pivotal role in the maturation of the 5.8S rRNA, providing a physical link between the nuclear exosome and the pre-60S RNP. An analogous interaction between Mtr4 and another ribosome biogenesis factor, Utp18, directs the exosome to an earlier preribosomal particle. Nop53 and Utp18 contain a similar Mtr4-binding motif known as the arch-interacting motif (AIM). Here, we report the 3.2 angstrom resolution crystal structure of S. cerevisiae Mtr4 bound to the interacting region of Nop53, revealing how the KOW domain of the helicase recognizes the AIM sequence of Nop53 with a network of hydrophobic and electrostatic interactions. The AIM-interacting residues are conserved in Mtr4 and are not present in the related cytoplasmic helicase Ski2, rationalizing the specificity and versatility of Mtr4 in the recognition of different AIM-containing proteins. Using nuclear magnetic resonance (NMR), we show that the KOW domain of Mtr4 can simultaneously bind an AIM-containing protein and a structured RNA at adjacent surfaces, suggesting how it can dock onto RNPs. The KOW domains of exosome-associated helicases thus appear to have evolved from the KOW domains of ribosomal proteins and to function as RNP-binding modules in the context of the nuclear exosome.
机译:核外出和相关的RNA Helicase MTR4参与几种核糖核蛋白颗粒(RNP)的加工,包括大核糖体亚基(60s)的成熟。 S. Cerevisiae MTR4直接与NOP53相互作用,含有5.8S rRNA的前体的60s颗粒中存在的核糖体生物发生因子。 MTR4-NOP53相互作用在5.8S rRNA的成熟中起枢转作用,提供核外出组和60S前RNP之间的物理连接。 MTR4与另一个核糖体生物发生因子UTP18之间的类似相互作用将外渗至早期的近体颗粒。 NOP53和UTP18含有类似的MTR4结合基质,称为拱形相互作用基序(AIM)。在此,我们报告3.2埃脑血管分辨率晶体结构与NOP53的相互作用区域结合,揭示了螺旋酶的kow结构域如何识别NOP53的目的序列与疏水性和静电相互作用网络。目标相互作用的残基在MTR4中保存,并且不存在于相关细胞质螺旋酶SKI2中,使MTR4的特异性和多功能性合理化在识别不同的含AIM的蛋白质中。使用核磁共振(NMR),我们表明MTR4的KOW结构域可以同时结合相邻表面的含含糊的蛋白质和结构化RNA,表明它如何停靠在RNP上。因此,外泌体相关螺旋酶的kow结构域似乎已经从核糖体蛋白的kow结构域演变并在核外部的背景下用作RNP结合模块。

著录项

  • 来源
    《RNA》 |2017年第12期|共8页
  • 作者单位

    Max Planck Inst Biochem Dept Struct Cell Biol D-82152 Martinsried Germany;

    Tech Univ Munich Ctr Integrated Prot Sci Munich Chair Biomol NMR Spect Dept Chem D-85748;

    Max Planck Inst Biochem Dept Struct Cell Biol D-82152 Martinsried Germany;

    Heidelberg Univ Biochem Ctr BZH INF 328 D-69120 Heidelberg Germany;

    Heidelberg Univ Biochem Ctr BZH INF 328 D-69120 Heidelberg Germany;

    Tech Univ Munich Ctr Integrated Prot Sci Munich Chair Biomol NMR Spect Dept Chem D-85748;

    Max Planck Inst Biochem Dept Struct Cell Biol D-82152 Martinsried Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    RNA exosome; DExH helicase; ribosome biogenesis; FRH;

    机译:RNA外泌体;Dexh Helicase;核糖体生物发生;FRH;

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