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PAZ结构域的结构与保守的RNA结合

Structure and conserved RNA binding of the PAZ domain.

作者信息

Yan Kelley S, Yan Sherry, Farooq Amjad, Han Arnold, Zeng Lei, Zhou Ming-Ming

机构信息

Structural Biology Program, Department of Physiology and Biophysics, Mount Sinai School of Medicine, New York University, One Gustave L. Levy Place, New York, New York 10029-6574, USA.

出版信息

Nature. 2003 Nov 27;426(6965):468-74. doi: 10.1038/nature02129. Epub 2003 Nov 16.

Abstract

The discovery of RNA-mediated gene-silencing pathways, including RNA interference, highlights a fundamental role of short RNAs in eukaryotic gene regulation and antiviral defence. Members of the Dicer and Argonaute protein families are essential components of these RNA-silencing pathways. Notably, these two families possess an evolutionarily conserved PAZ (Piwi/Argonaute/Zwille) domain whose biochemical function is unknown. Here we report the nuclear magnetic resonance solution structure of the PAZ domain from Drosophila melanogaster Argonaute 1 (Ago1). The structure consists of a left-handed, six-stranded beta-barrel capped at one end by two alpha-helices and wrapped on one side by a distinctive appendage, which comprises a long beta-hairpin and a short alpha-helix. Using structural and biochemical analyses, we demonstrate that the PAZ domain binds a 5-nucleotide RNA with 1:1 stoichiometry. We map the RNA-binding surface to the open face of the beta-barrel, which contains amino acids conserved within the PAZ domain family, and we define the 5'-to-3' orientation of single-stranded RNA bound within that site. Furthermore, we show that PAZ domains from different human Argonaute proteins also bind RNA, establishing a conserved function for this domain.

摘要

RNA介导的基因沉默途径(包括RNA干扰)的发现,凸显了短RNA在真核生物基因调控和抗病毒防御中的重要作用。Dicer和Argonaute蛋白家族的成员是这些RNA沉默途径的关键组成部分。值得注意的是,这两个家族拥有一个进化上保守的PAZ(Piwi/Argonaute/Zwille)结构域,其生化功能尚不清楚。在此,我们报道了果蝇Argonaute 1(Ago1)的PAZ结构域的核磁共振溶液结构。该结构由一个左手六链β桶组成,一端由两个α螺旋封闭,一侧被一个独特的附属物包裹,该附属物包括一个长β发夹和一个短α螺旋。通过结构和生化分析,我们证明PAZ结构域以1:1的化学计量比结合一个5核苷酸RNA。我们将RNA结合表面定位到β桶的开放面,该表面包含PAZ结构域家族内保守的氨基酸,并且我们确定了结合在该位点内的单链RNA从5'到3'的方向。此外,我们表明来自不同人类Argonaute蛋白的PAZ结构域也能结合RNA,确立了该结构域的保守功能。

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