首页> 美国卫生研究院文献>Nucleic Acids Research >The DEAH-box RNA helicase Dhr1 contains a remarkable carboxyl terminal domain essential for small ribosomal subunit biogenesis
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The DEAH-box RNA helicase Dhr1 contains a remarkable carboxyl terminal domain essential for small ribosomal subunit biogenesis

机译:DEAH-box RNA解旋酶Dhr1包含一个重要的羧基末端结构域对于小核糖体亚基生物发生至关重要

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摘要

Ribosome biogenesis is an essential process in all living cells, which entails countless highly sequential and dynamic structural reorganization events. These include formation of dozens RNA helices through Watson-Crick base-pairing within ribosomal RNAs (rRNAs) and between rRNAs and small nucleolar RNAs (snoRNAs), transient association of hundreds of proteinaceous assembly factors to nascent precursor (pre-)ribosomes, and stable assembly of ribosomal proteins. Unsurprisingly, the largest group of ribosome assembly factors are energy-consuming proteins (NTPases) including 25 RNA helicases in budding yeast. Among these, the DEAH-box Dhr1 is essential to displace the box C/D snoRNA U3 from the pre-rRNAs where it is bound in order to prevent premature formation of the central pseudoknot, a dramatic irreversible long-range interaction essential to the overall folding of the small ribosomal subunit. Here, we report the crystal structure of the Dhr1 helicase module, revealing the presence of a remarkable carboxyl-terminal domain essential for Dhr1 function in ribosome biogenesis in vivo and important for its interaction with its coactivator Utp14 in vitro. Furthermore, we report the functional consequences on ribosome biogenesis of DHX37 (human Dhr1) mutations found in patients suffering from microcephaly and other neurological diseases.
机译:核糖体生物发生是所有活细胞中必不可少的过程,需要无数的高度顺序和动态的结构重组事件。其中包括通过核糖体RNA(rRNA)内以及rRNA与小核仁RNA(snoRNA)之间的Watson-Crick碱基配对形成数十个RNA螺旋,数百个蛋白质组装因子与新生前体(前)核糖体的瞬时缔合,以及稳定的核糖体蛋白的组装。毫不奇怪,核糖体装配因子中最大的一组是耗能蛋白(NTPases),其中包括萌芽酵母中的25种RNA解旋酶。其中,DEAH盒Dhr1对于将盒C / D snoRNA U3从其结合的pre-rRNA中移出是必不可少的,以防止中央假结的过早形成,这对于整个系统至关重要,是不可逆的远距离相互作用小核糖体亚基的折叠。在这里,我们报告Dhr1解旋酶模块的晶体结构,揭示了Dhr1功能在体内核糖体生物发生中必需的一个显着的羧基末端结构域的存在,并且对于其与其共激活因子Utp14的相互作用非常重要。此外,我们报告了在患有小头畸形和其他神经系统疾病的患者中发现的DHX37(人类Dhr1)突变的核糖体生物发生的功能后果。

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