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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Reduced fidelity of branch point recognition and alternative splicing induced by the anti-tumor drug spliceostatin A.
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Reduced fidelity of branch point recognition and alternative splicing induced by the anti-tumor drug spliceostatin A.

机译:抗肿瘤药物spliceostatin A诱导的分支点识别和替代剪接的保真度降低。

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摘要

Spliceostatin A (SSA) is a stabilized derivative of a Pseudomonas bacterial fermentation product that displays potent anti-proliferative and anti-tumor activities in cancer cells and animal models. The drug inhibits pre-mRNA splicing in vitro and in vivo and binds SF3b, a protein subcomplex of U2 small nuclear ribonucleoprotein (snRNP), which is essential for recognition of the pre-mRNA branch point. We report that SSA prevents interaction of an SF3b 155-kDa subunit with the pre-mRNA, concomitant with nonproductive recruitment of U2 snRNP to sequences 5' of the branch point. Differences in base-pairing potential with U2 snRNA in this region lead to different sensitivity of 3' splice sites to SSA, and to SSA-induced changes in alternative splicing. Indeed, rather than general splicing inhibition, splicing-sensitive microarray analyses reveal specific alternative splicing changes induced by the drug that significantly overlap with those induced by knockdown of SF3b 155. These changes lead to down-regulation of genes important for cell division, including cyclin A2 and Aurora A kinase, thus providing an explanation for the anti-proliferative effects of SSA. Our results reveal a mechanism that prevents nonproductive base-pairing interactions in the spliceosome, and highlight the regulatory and cancer therapeutic potential of perturbing the fidelity of splice site recognition.
机译:Spliceostatin A(SSA)是假单胞菌细菌发酵产品的稳定衍生物,在癌细胞和动物模型中显示出强大的抗增殖和抗肿瘤活性。该药物在体外和体内抑制pre-mRNA剪接,并与SF3b结合,SF3b是U2小核糖核蛋白(snRNP)的蛋白质亚复合物,这对于识别pre-mRNA分支点至关重要。我们报告说,SSA阻止了SF3b 155-kDa亚基与pre-mRNA的相互作用,并伴随着非生产性的U2 snRNP募集到分支点的5'序列。在该区域中与U2 snRNA碱基配对潜力的差异会导致3'剪接位点对SSA的敏感性不同,并导致SSA诱导替代剪接的变化。实际上,与一般的剪接抑制作用不同,剪接敏感的微阵列分析揭示了由药物诱导的特定替代剪接变化,与由SF3b 155敲低诱导的剪接变化显着重叠。这些变化导致对细胞分裂重要的基因(包括细胞周期蛋白)的下调A2和Aurora A激酶,从而为SSA的抗增殖作用提供了解释。我们的结果揭示了防止剪接体中非生产性碱基配对相互作用的机制,并强调了干扰剪接位点识别保真度的调节和癌症治疗潜力。

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