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剪接因子prp24的前三个RNA识别基序的结构与相互作用

Structure and interactions of the first three RNA recognition motifs of splicing factor prp24.

作者信息

Bae Euiyoung, Reiter Nicholas J, Bingman Craig A, Kwan Sharon S, Lee Donghan, Phillips George N, Butcher Samuel E, Brow David A

机构信息

Department of Biochemistry, University of Wisconsin, Madison, WI 53706, USA.

出版信息

J Mol Biol. 2007 Apr 13;367(5):1447-58. doi: 10.1016/j.jmb.2007.01.078. Epub 2007 Feb 7.

Abstract

The essential Saccharomyces cerevisiae pre-messenger RNA splicing protein 24 (Prp24) has four RNA recognition motifs (RRMs) and facilitates U6 RNA base-pairing with U4 RNA during spliceosome assembly. Prp24 is a component of the free U6 small nuclear ribonucleoprotein particle (snRNP) but not the U4/U6 bi-snRNP, and so is thought to be displaced from U6 by U4/U6 base-pairing. The interaction partners of each of the four RRMs of Prp24 and how these interactions direct U4/U6 pairing are not known. Here we report the crystal structure of the first three RRMs and the solution structure of the first two RRMs of Prp24. Strikingly, RRM 2 forms extensive inter-domain contacts with RRMs 1 and 3. These contacts occupy much of the canonical RNA-binding faces (beta-sheets) of RRMs 1 and 2, but leave the beta-sheet of RRM 3 exposed. Previously identified substitutions in Prp24 that suppress mutations in U4 and U6 spliceosomal RNAs cluster primarily in the beta-sheet of RRM 3, but also in a conserved loop of RRM 2. RNA binding assays and chemical shift mapping indicate that a large basic patch evident on the surface of RRMs 1 and 2 is part of a high affinity U6 RNA binding site. Our results suggest that Prp24 binds free U6 RNA primarily with RRMs 1 and 2, which may remodel the U6 secondary structure. The beta-sheet of RRM 3 then influences U4/U6 pairing through interaction with an unidentified ligand.

摘要

酿酒酵母中必不可少的前体信使RNA剪接蛋白24(Prp24)具有四个RNA识别基序(RRMs),并在剪接体组装过程中促进U6 RNA与U4 RNA碱基配对。Prp24是游离U6小核核糖核蛋白颗粒(snRNP)的一个组成部分,而非U4/U6双snRNP的组成部分,因此被认为会因U4/U6碱基配对而从U6上被取代。Prp24的四个RRMs各自的相互作用伙伴以及这些相互作用如何引导U4/U6配对尚不清楚。在此,我们报告了Prp24前三个RRMs的晶体结构以及前两个RRMs的溶液结构。引人注目的是,RRM 2与RRM 1和RRM 3形成了广泛的结构域间接触。这些接触占据了RRM 1和RRM 2的大部分经典RNA结合面(β折叠),但RRM 3的β折叠暴露在外。先前在Prp24中鉴定出的可抑制U4和U6剪接体RNA中突变的替代主要集中在RRM 3的β折叠中,但也存在于RRM 2的一个保守环中。RNA结合试验和化学位移图谱表明,RRM 1和RRM 2表面明显的一个大碱性斑块是高亲和力U6 RNA结合位点的一部分。我们的结果表明,Prp24主要通过RRM 1和RRM 2结合游离的U6 RNA,这可能重塑U6的二级结构。然后,RRM 3的β折叠通过与一个未鉴定配体的相互作用影响U4/U6配对。

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