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新型剪接因子RBM25调节Bcl-x前体mRNA 5'剪接位点的选择。

Novel splicing factor RBM25 modulates Bcl-x pre-mRNA 5' splice site selection.

作者信息

Zhou Anyu, Ou Alexander C, Cho Aeri, Benz Edward J, Huang Shu-Ching

机构信息

Department of Medical Oncology, Dana-Farber Cancer Institute, 44 Binney Street, Boston, MA 02115, USA.

出版信息

Mol Cell Biol. 2008 Oct;28(19):5924-36. doi: 10.1128/MCB.00560-08. Epub 2008 Jul 28.

Abstract

RBM25 has been shown to associate with splicing cofactors SRm160/300 and assembled splicing complexes, but little is known about its splicing regulation. Here, we characterize the functional role of RBM25 in alternative pre-mRNA splicing. Increased RBM25 expression correlated with increased apoptosis and specifically affected the expression of Bcl-x isoforms. RBM25 stimulated proapoptotic Bcl-x(S) 5' splice site (5' ss) selection in a dose-dependent manner, whereas its depletion caused the accumulation of antiapoptotic Bcl-x(L). Furthermore, RBM25 specifically bound to Bcl-x RNA through a CGGGCA sequence located within exon 2. Mutation in this element abolished the ability of RBM25 to enhance Bcl-x(S) 5' ss selection, leading to decreased Bcl-x(S) isoform expression. Binding of RBM25 was shown to promote the recruitment of the U1 small nuclear ribonucleoprotein particle (snRNP) to the weak 5' ss; however, it was not required when a strong consensus 5' ss was present. In support of a role for RBM25 in modulating the selection of a 5' ss, we demonstrated that RBM25 associated selectively with the human homolog of yeast U1 snRNP-associated factor hLuc7A. These data suggest a novel mode for Bcl-x(S) 5' ss activation in which binding of RBM25 with exonic element CGGGCA may stabilize the pre-mRNA-U1 snRNP through interactions with hLuc7A.

摘要

RBM25已被证明与剪接辅因子SRm160/300以及组装好的剪接复合体相关联,但对其剪接调控作用却知之甚少。在此,我们对RBM25在可变前体mRNA剪接中的功能作用进行了表征。RBM25表达的增加与细胞凋亡增加相关,且特异性地影响了Bcl-x异构体的表达。RBM25以剂量依赖的方式刺激促凋亡的Bcl-x(S) 5'剪接位点(5' ss)的选择,而其缺失则导致抗凋亡的Bcl-x(L)的积累。此外,RBM25通过位于外显子2内的CGGGCA序列特异性地结合到Bcl-x RNA上。该元件的突变消除了RBM25增强Bcl-x(S) 5' ss选择的能力,导致Bcl-x(S)异构体表达减少。已证明RBM25的结合可促进U1小核核糖核蛋白颗粒(snRNP)募集到较弱的5' ss;然而,当存在强共有5' ss时则不需要。为支持RBM25在调节5' ss选择中的作用,我们证明RBM25选择性地与酵母U1 snRNP相关因子hLuc7A的人类同源物相关联。这些数据提示了一种Bcl-x(S) 5' ss激活的新模式,即RBM25与外显子元件CGGGCA的结合可能通过与hLuc7A的相互作用稳定前体mRNA-U1 snRNP。

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