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与单链端粒DNA复合的hnRNP A1(UP1)双RRM结构域的晶体结构。

Crystal structure of the two-RRM domain of hnRNP A1 (UP1) complexed with single-stranded telomeric DNA.

作者信息

Ding J, Hayashi M K, Zhang Y, Manche L, Krainer A R, Xu R M

机构信息

W.M. Keck Structural Biology Laboratory, Cold Spring Harbor, New York 11724, USA.

出版信息

Genes Dev. 1999 May 1;13(9):1102-15. doi: 10.1101/gad.13.9.1102.

Abstract

Human hnRNP A1 is a versatile single-stranded nucleic acid-binding protein that functions in various aspects of mRNA maturation and in telomere length regulation. The crystal structure of UP1, the amino-terminal domain of human hnRNP A1 containing two RNA-recognition motifs (RRMs), bound to a 12-nucleotide single-stranded telomeric DNA has been determined at 2.1 A resolution. The structure of the complex reveals the basis for sequence-specific recognition of the single-stranded overhangs of human telomeres by hnRNP A1. It also provides insights into the basis for high-affinity binding of hnRNP A1 to certain RNA sequences, and for nucleic acid binding and functional synergy between the RRMs. In the crystal structure, a UP1 dimer binds to two strands of DNA, and each strand contacts RRM1 of one monomer and RRM2 of the other. The two DNA strands are antiparallel, and regions of the protein flanking each RRM make important contacts with DNA. The extensive protein-protein interface seen in the crystal structure of the protein-DNA complex and the evolutionary conservation of the interface residues suggest the importance of specific protein-protein interactions for the sequence-specific recognition of single-stranded nucleic acids. Models for regular packaging of telomere 3' overhangs and for juxtaposition of alternative 5' splice sites are proposed.

摘要

人hnRNP A1是一种多功能的单链核酸结合蛋白,在mRNA成熟的各个方面以及端粒长度调节中发挥作用。已确定人hnRNP A1的氨基末端结构域UP1(包含两个RNA识别基序(RRMs))与一段12个核苷酸的单链端粒DNA结合的晶体结构,分辨率为2.1埃。该复合物的结构揭示了hnRNP A1对人端粒单链突出端进行序列特异性识别的基础。它还为hnRNP A1与某些RNA序列的高亲和力结合以及RRMs之间的核酸结合和功能协同作用的基础提供了见解。在晶体结构中,一个UP1二聚体与两条DNA链结合,每条链与一个单体的RRM1和另一个单体的RRM2接触。两条DNA链是反平行的,每个RRM侧翼的蛋白质区域与DNA形成重要接触。在蛋白质-DNA复合物的晶体结构中看到的广泛蛋白质-蛋白质界面以及界面残基的进化保守性表明特定蛋白质-蛋白质相互作用对单链核酸序列特异性识别的重要性。提出了端粒3'突出端的规则包装模型和可变5'剪接位点并列的模型。

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