首页> 外文期刊>Nucleic Acids Research >Regulation of BCL-X splicing reveals a role for the polypyrimidine tract binding protein (PTBP1/hnRNP I) in alternative 5 ' splice site selection
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Regulation of BCL-X splicing reveals a role for the polypyrimidine tract binding protein (PTBP1/hnRNP I) in alternative 5 ' splice site selection

机译:BCL-X剪接的调控揭示了聚嘧啶束结合蛋白(PTBP1 / hnRNP I)在替代5'剪接位点选择中的作用

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摘要

Alternative splicing (AS) modulates many physiological and pathological processes. For instance, AS of the BCL-X gene balances cell survival and apoptosis in development and cancer. Herein, we identified the polypyrimidine tract binding protein (PTBP1) as a direct regulator of BCL-X AS. Overexpression of PTBP1 promotes selection of the distal 5' splice site in BCL-X exon 2, generating the pro-apoptotic BCL-Xs splice variant. Conversely, depletion of PTBP1 enhanced splicing of the anti-apoptotic BCL-XL variant. In vivo cross-linking experiments and site-directed mutagenesis restricted the PTBP1 binding site to a polypyrimidine tract located between the two alternative 5' splice sites. Binding of PTBP1 to this site was required for its effect on splicing. Notably, a similar function of PTBP1 in the selection of alternative 5' splice sites was confirmed using the USP5 gene as additional model. Mechanistically, PTBP1 displaces SRSF1 binding from the proximal 5' splice site, thus repressing its selection. Our study provides a novel mechanism of alternative 5' splice site selection by PTBP1 and indicates that the presence of a PTBP1 binding site between two alternative 5' splice sites promotes selection of the distal one, while repressing the proximal site by competing for binding of a positive regulator.
机译:选择性剪接(AS)调节许多生理和病理过程。例如,BCL-X基因的AS在发育和癌症中平衡细胞存活和细胞凋亡。在这里,我们确定了聚嘧啶束结合蛋白(PTBP1)是BCL-X AS的直接调节剂。 PTBP1的过表达促进BCL-X外显子2中远端5'剪接位点的选择,产生促凋亡BCL-Xs剪接变体。相反,PTBP1的耗尽增强了抗凋亡BCL-XL变体的剪接。体内交联实验和定点诱变将PTBP1结合位点限制为位于两个替代5'剪接位点之间的多嘧啶束。 PTBP1与该位点的结合是其对剪接的作用所必需的。值得注意的是,使用USP5基因作为其他模型,证实了PTBP1在替代5'剪接位点选择中的相似功能。从机理上讲,PTBP1从近端5'剪接位点取代SRSF1结合,从而抑制了其选择。我们的研究提供了一种通过PTBP1选择5'剪接位点的新机制,并表明在两个5'剪接位点之间存在PTBP1结合位点可以促进远端的选择,同时通过竞争结合的方式抑制近端。正调节器。

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