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拼接抑素 A 抑制剪接体复合物的组装,其作用发生在预剪接体形成之后。

Spliceostatin A inhibits spliceosome assembly subsequent to prespliceosome formation.

机构信息

Department of Molecular, Cell and Developmental Biology and Center for Molecular Biology of RNA, University of California, Santa Cruz, CA, USA.

出版信息

Nucleic Acids Res. 2010 Oct;38(19):6664-72. doi: 10.1093/nar/gkq494. Epub 2010 Jun 6.

Abstract

Pre-mRNA splicing is catalyzed by the large ribonucleoprotein spliceosome. Spliceosome assembly is a highly dynamic process in which the complex transitions through a number of intermediates. Recently, the potent anti-tumor compound Spliceostatin A (SSA) was shown to inhibit splicing and to interact with an essential component of the spliceosome, SF3b. However, it was unclear whether SSA directly impacts the spliceosome and, if so, by what mechanism, which limits interpretation of the drugs influence on splicing. Here, we report that SSA inhibits pre-mRNA splicing by interfering with the spliceosome subsequent to U2 snRNP addition. We demonstrate that SSA inhibition of spliceosome assembly requires ATP, key pre-mRNA splicing sequences and intact U1 and U2 snRNAs. Furthermore all five U snRNAs in addition to the SSA molecule associate with pre-mRNA during SSA inhibition. Kinetic analyses reveal that SSA impedes the A to B complex transition. Remarkably, our data imply that, in addition to its established function in early U2 snRNP recruitment, SF3b plays a role in later maturation of spliceosomes. This work establishes SSA as a powerful tool for dissecting the dynamics of spliceosomes in cells. In addition our data will inform the design of synthetic splicing modulator compounds for targeted anti-tumor treatment.

摘要

前体 mRNA 剪接是由大型核糖核蛋白剪接体催化的。剪接体的组装是一个高度动态的过程,在此过程中,复合物通过多个中间产物进行转换。最近,强效抗肿瘤化合物 Spliceostatin A(SSA)被证明可以抑制剪接,并与剪接体的一个必需成分 SF3b 相互作用。然而,SSA 是否直接影响剪接体,以及如果是,通过什么机制,这些问题尚不清楚,这限制了对药物对剪接影响的解释。在这里,我们报告 SSA 通过干扰 U2 snRNP 加入后的剪接体来抑制前体 mRNA 的剪接。我们证明 SSA 抑制剪接体组装需要 ATP、关键的前体 mRNA 剪接序列和完整的 U1 和 U2 snRNA。此外,除了 SSA 分子外,所有五个 U snRNA 以及在 SSA 抑制期间与前体 mRNA 结合。动力学分析表明 SSA 阻碍了 A 到 B 复合物的转变。值得注意的是,我们的数据表明,除了其在早期 U2 snRNP 招募中的既定功能外,SF3b 在剪接体的后期成熟中也发挥作用。这项工作确立了 SSA 作为一种强大的工具,用于在细胞中剖析剪接体的动态。此外,我们的数据将为设计用于靶向抗肿瘤治疗的合成剪接调节剂化合物提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf5b/2965229/16ccb6d6af18/gkq494f1.jpg

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