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Identification of a small molecule inhibitor that stalls splicing at an early step of spliceosome activation

机译:鉴定在剪接体活化的早期使拼接停止的小分子抑制剂

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摘要

Small molecule inhibitors of pre-mRNA splicing are important tools for identifying new spliceosome assembly intermediates, allowing a finer dissection of spliceosome dynamics and function. Here, we identified a small molecule that inhibits human pre-mRNA splicing at an intermediate stage during conversion of pre-catalytic spliceosomal B complexes into activated Bact complexes. Characterization of the stalled complexes (designated B028) revealed that U4/U6 snRNP proteins are released during activation before the U6 Lsm and B-specific proteins, and before recruitment and/or stable incorporation of Prp19/CDC5L complex and other Bact complex proteins. The U2/U6 RNA network in B028 complexes differs from that of the Bact complex, consistent with the idea that the catalytic RNA core forms stepwise during the B to Bact transition and is likely stabilized by the Prp19/CDC5L complex and related proteins. Taken together, our data provide new insights into the RNP rearrangements and extensive exchange of proteins that occurs during spliceosome activation.
机译:mRNA剪接前的小分子抑制剂是鉴定新的剪接体组装中间体的重要工具,可以更好地剖析剪接体的动力学和功能。在这里,我们确定了一个小分子,该分子在将催化前剪接体B复合体转化为活化的Bact复合体的过程中的一个中间阶段抑制人类pre-mRNA剪接。失速复合物(命名为B028)的表征表明,U4 / U6 snRNP蛋白在激活过程中在U6 Lsm和B特异性蛋白之前,以及在募集和/或稳定掺入Prp19 / CDC5L复合物和其他Bact复合蛋白之前释放。 B028复合物中的U2 / U6 RNA网络不同于Bact复合物,这与催化RNA核心在B向Bact过渡过程中逐步形成并可能由Prp19 / CDC5L复合物和相关蛋白稳定的想法一致。综上所述,我们的数据为RNP重排和剪接体激活过程中发生的广泛蛋白质交换提供了新见解。

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