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首页> 外文期刊>Nucleic Acids Research >Correlated alternative side chain conformations in the RNA-recognition motif of heterogeneous nuclear ribonucleoprotein A1
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Correlated alternative side chain conformations in the RNA-recognition motif of heterogeneous nuclear ribonucleoprotein A1

机译:异种核糖核蛋白A1的RNA识别基序中的相关替代侧链构象

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摘要

The RNA-recognition motif (RRM) is a common and evolutionarily conserved RNA-binding module. Crystallographic and solution structural studies have shown that RRMs adopt a compact α/β structure, in which four antiparallel β-strands form the major RNA-binding surface. Conserved aromatic residues in the RRM are located on the surface of the β-sheet and are important for RNA binding. To further our understanding of the structural basis of RRM-nucleic acid interaction, we carried out a high resolution analysis of UP1, the N-terminal, two-RRM domain of heterogeneous nuclear ribonucleoprotein A1 (hnRNP A1), whose structure was previously solved at 1.75-1.9 A resolution. The two RRMs of hnRNP A1 are closely related but have distinct functions in regulating alternative pre-mRNA splice site selection. Our present 1.1 A resolution crystal structure reveals that two conserved solvent-exposed phenylalanines in the first RRM have alternative side chain conformations. These conformations are spatially correlated, as the individual amino acids cannot adopt each of the observed conformations independently. These phenylalanines are critical for nucleic acid binding and the observed alternative side chain conformations may serve as a mechanism for regulating nucleic acid binding by RRM-containing proteins.
机译:RNA识别基序(RRM)是常见且进化保守的RNA结合模块。晶体学和溶液结构研究表明,RRM采用紧凑的α/β结构,其中四个反平行的β链形成了主要的RNA结合表面。 RRM中保守的芳香族残基位于β-折叠的表面,对于RNA结合很重要。为了进一步了解RRM与核酸相互作用的结构基础,我们对UP1(异质核糖核蛋白A1(hnRNP A1)的N末端两个RRM域)进行了高分辨率分析,该结构先前已在1.75-1.9分辨率。 hnRNP A1的两个RRM密切相关,但在调节其他前mRNA剪接位点选择方面具有不同的功能。我们目前的1.1分辨率晶体结构表明,在第一个RRM中两个保守的溶剂暴露的苯丙氨酸具有可替代的侧链构象。这些构象在空间上相关,因为单个氨基酸不能独立采用每个观察到的构象。这些苯丙氨酸对于核酸结合至关重要,观察到的替代性侧链构象可作为调节含RRM蛋白质与核酸结合的机制。

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