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解析与嘧啶序列结合的PTB结构:对低亲和力蛋白质-RNA复合物的核磁共振研究

Solving the structure of PTB in complex with pyrimidine tracts: an NMR study of protein-RNA complexes of weak affinities.

作者信息

Auweter Sigrid D, Oberstrass Florian C, Allain Frédéric H-T

机构信息

Institute for Molecular Biology and Biophysics, ETH Zürich, CH-8093 Zürich, Switzerland; Molecular Life Science PhD Program, Zürich, Switzerland.

出版信息

J Mol Biol. 2007 Mar 16;367(1):174-86. doi: 10.1016/j.jmb.2006.12.053. Epub 2006 Dec 23.

DOI:10.1016/j.jmb.2006.12.053
PMID:17239394
Abstract

NMR spectroscopy has proven to be a powerful tool for the structure determination of protein/RNA complexes. However, the quality of these structures depends critically on the number of unambiguous intermolecular and intra-RNA nuclear Overhauser effect (NOE) constraints that can be derived. This number is often limited due to exchange phenomena that can cause signal line broadening and the fact that unambiguous NOE assignments are challenging in systems that exchange between different conformations in the intermediate to fast exchange limit. These exchange processes can include exchange between free and bound form, as well as exchange of the ligand between different binding sites on the protein. Furthermore, for the large class of RNA metabolizing proteins that bind repetitive low-complexity RNA sequences in multiple register, exchange of the protein between these overlapping binding sites introduces additional exchange pathways. Here, we describe the strategy we used to overcome these exchange processes and to reduce significantly the line width of the RNA resonances in complexes of the RNA recognition motifs (RRMs) of the polypyrimidine tract-binding protein (PTB) in complex with pyrimidine tracts and hence allowed a highly precise structure determination. This method could be employed to derive structures of other protein/single-stranded nucleic acid complexes by NMR spectroscopy. Furthermore, we have determined the affinities of the individual RRMs of PTB for pyrimidine tracts of different length and sequence. These measurements show that PTB binds preferentially to long pyrimidine tracts that contain cytosine and hence confirm the structure of PTB in complex with RNA. Furthermore, they provide quantitative insight into the question of which pyrimidine sequences within alternatively spliced pre-mRNAs will be preferentially bound by PTB.

摘要

核磁共振光谱已被证明是确定蛋白质/RNA复合物结构的有力工具。然而,这些结构的质量关键取决于能够推导出来的明确的分子间和RNA内核Overhauser效应(NOE)约束的数量。由于可能导致信号线展宽的交换现象,以及在中等至快速交换极限下在不同构象之间交换的系统中明确的NOE归属具有挑战性,这个数量通常是有限的。这些交换过程可以包括游离形式和结合形式之间的交换,以及配体在蛋白质上不同结合位点之间的交换。此外,对于一大类在多个寄存器中结合重复低复杂性RNA序列的RNA代谢蛋白,蛋白质在这些重叠结合位点之间的交换引入了额外的交换途径。在这里,我们描述了我们用来克服这些交换过程并显著降低多嘧啶序列结合蛋白(PTB)的RNA识别基序(RRMs)与嘧啶序列复合物中RNA共振线宽的策略,从而实现了高精度的结构测定。该方法可用于通过核磁共振光谱推导其他蛋白质/单链核酸复合物的结构。此外,我们还测定了PTB的各个RRMs对不同长度和序列的嘧啶序列的亲和力。这些测量结果表明,PTB优先结合含有胞嘧啶的长嘧啶序列,从而证实了PTB与RNA复合物的结构。此外,它们还为选择性剪接前体mRNA中的哪些嘧啶序列将被PTB优先结合这一问题提供了定量的见解。

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