人类H/ACA核糖核蛋白组装蛋白Shq1的CS结构域的结构与相互作用

Structure and interactions of the CS domain of human H/ACA RNP assembly protein Shq1.

作者信息

Singh Mahavir, Wang Zhonghua, Cascio Duilio, Feigon Juli

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles, CA 90095, USA.

University of California Los Angeles-Department of Energy (UCLA-DOE) Institute for Genomics and Proteomics, University of California, Los Angeles, CA 90095, USA.

出版信息

J Mol Biol. 2015 Feb 27;427(4):807-823. doi: 10.1016/j.jmb.2014.12.012. Epub 2014 Dec 29.

Abstract

Shq1 is an essential protein involved in the early steps of biogenesis and assembly of H/ACA ribonucleoprotein particles (RNPs). Shq1 binds to dyskerin (Cbf5 in yeast) at an early step of H/ACA RNP assembly and is subsequently displaced by the H/ACA RNA. Shq1 contains an N-terminal CS and a C-terminal Shq1-specific domain (SSD). Dyskerin harbors many mutations associated with dyskeratosis congenita. Structures of yeast Shq1 SSD bound to Cbf5 revealed that only a subset of these mutations is in the SSD binding site, implicating another subset in the putative CS binding site. Here, we present the crystal structure of human Shq1 CS (hCS) and the nuclear magnetic resonance (NMR) and crystal structures of hCS containing a serine substitution for proline 22 that is associated with some prostate cancers. The structure of hCS is similar to yeast Shq1 CS domain (yCS) and consists of two β-sheets that form an immunoglobulin-like β-sandwich fold. The N-terminal affinity tag sequence AHHHHHH associates with a neighboring protein in the crystal lattice to form an extra β-strand. Deletion of this tag was required to get spectra suitable for NMR structure determination, while the tag was required for crystallization. NMR chemical shift perturbation (CSP) experiments with peptides derived from putative CS binding sites on dyskerin and Cbf5 revealed a conserved surface on CS important for Cbf5/dyskerin binding. A HADDOCK (high-ambiguity-driven protein-protein docking) model of a Shq1-Cbf5 complex that defines the position of CS domain in the pre-H/ACA RNP was calculated using the CSP data.

摘要

Shq1是一种参与H/ACA核糖核蛋白颗粒(RNP)生物合成和组装早期步骤的必需蛋白。在H/ACA RNP组装的早期阶段,Shq1与角化不良蛋白(酵母中的Cbf5)结合,随后被H/ACA RNA取代。Shq1包含一个N端CS和一个C端Shq1特异性结构域(SSD)。角化不良蛋白存在许多与先天性角化不良相关的突变。酵母Shq1 SSD与Cbf5结合的结构表明,这些突变中只有一部分位于SSD结合位点,这意味着另一部分位于假定的CS结合位点。在此,我们展示了人Shq1 CS(hCS)的晶体结构以及含有与某些前列腺癌相关的脯氨酸22丝氨酸替代的hCS的核磁共振(NMR)和晶体结构。hCS的结构与酵母Shq1 CS结构域(yCS)相似,由两个β折叠片组成,形成免疫球蛋白样的β三明治折叠。N端亲和标签序列AHHHHHH与晶格中的相邻蛋白结合形成一条额外的β链。为了获得适合NMR结构测定的光谱,需要删除该标签,而结晶则需要该标签。用来自角化不良蛋白和Cbf5上假定的CS结合位点的肽进行的NMR化学位移扰动(CSP)实验揭示了CS上一个对Cbf5/角化不良蛋白结合很重要的保守表面。利用CSP数据计算了一个定义CS结构域在H/ACA RNP前体中位置的Shq1 - Cbf5复合物的HADDOCK(高模糊度驱动的蛋白质 - 蛋白质对接)模型。

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