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新生核糖体激活DEAD盒RNA解旋酶DbpA的结构基础。

Structural basis for the activation of the DEAD-box RNA helicase DbpA by the nascent ribosome.

作者信息

Wurm Jan Philip, Glowacz Katarzyna-Anna, Sprangers Remco

机构信息

Institute of Biophysics and Physical Biochemistry, Regensburg Center for Biochemistry, University of Regensburg, 93053 Regensburg, Germany

Institute of Biophysics and Physical Biochemistry, Regensburg Center for Biochemistry, University of Regensburg, 93053 Regensburg, Germany.

出版信息

Proc Natl Acad Sci U S A. 2021 Aug 31;118(35). doi: 10.1073/pnas.2105961118.

Abstract

The adenosine triphosphate (ATP)-dependent DEAD-box RNA helicase DbpA from functions in ribosome biogenesis. DbpA is targeted to the nascent 50S subunit by an ancillary, carboxyl-terminal RNA recognition motif (RRM) that specifically binds to hairpin 92 (HP92) of the 23S ribosomal RNA (rRNA). The interaction between HP92 and the RRM is required for the helicase activity of the RecA-like core domains of DbpA. Here, we elucidate the structural basis by which DbpA activity is endorsed when the enzyme interacts with the maturing ribosome. We used nuclear magnetic resonance (NMR) spectroscopy to show that the RRM and the carboxyl-terminal RecA-like domain tightly interact. This orients HP92 such that this RNA hairpin can form electrostatic interactions with a positively charged patch in the N-terminal RecA-like domain. Consequently, the enzyme can stably adopt the catalytically important, closed conformation. The substrate binding mode in this complex reveals that a region 5' to helix 90 in the maturing ribosome is specifically targeted by DbpA. Finally, our results indicate that the ribosome maturation defects induced by a dominant negative DbpA mutation are caused by a delayed dissociation of DbpA from the nascent ribosome. Taken together, our findings provide unique insights into the important regulatory mechanism that modulates the activity of DbpA.

摘要

来自[具体来源未提及]的三磷酸腺苷(ATP)依赖性DEAD盒RNA解旋酶DbpA在核糖体生物合成中发挥作用。DbpA通过一个辅助性的羧基末端RNA识别基序(RRM)靶向新生的50S亚基,该基序特异性结合23S核糖体RNA(rRNA)的发夹92(HP92)。HP92与RRM之间的相互作用是DbpA中RecA样核心结构域解旋酶活性所必需的。在此,我们阐明了DbpA与成熟核糖体相互作用时其活性被增强的结构基础。我们利用核磁共振(NMR)光谱表明RRM与羧基末端RecA样结构域紧密相互作用。这使HP92定向,从而使该RNA发夹能够与N末端RecA样结构域中带正电荷的区域形成静电相互作用。因此,该酶能够稳定地采用具有催化重要性的闭合构象。此复合物中的底物结合模式表明,成熟核糖体中螺旋90 5'端的一个区域是DbpA的特异性靶向区域。最后,我们的结果表明,显性负性DbpA突变诱导的核糖体成熟缺陷是由DbpA从新生核糖体延迟解离所致。综上所述,我们的发现为调节DbpA活性的重要调控机制提供了独特见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d09a/8536315/0aa38fa5e37e/pnas.2105961118fig01.jpg

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