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首页> 外文期刊>RNA >An unanticipated early function of DEAD-box ATPase Prp28 during commitment to splicing is modulated by U5 snRNP protein Prp8
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An unanticipated early function of DEAD-box ATPase Prp28 during commitment to splicing is modulated by U5 snRNP protein Prp8

机译:U5 snRNP蛋白Prp8调节了DEAD-box ATPase Prp28的未预期的早期拼接功能

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摘要

The stepwise assembly of the highly dynamic spliceosome is guided by RNA-dependent ATPases of the DEAD-box family, whose regulation is poorly understood. In the canonical assembly model, the U4/U6.U5 triple snRNP binds only after joining of the U1 and, subsequently, U2 snRNPs to the intron-containing pre-mRNA. Catalytic activation requires the exchange of U6 for U1 snRNA at the 5′ splice site, which is promoted by the DEAD-box protein Prp28. Because Prp8, an integral U5 snRNP protein, is thought to be a central regulator of DEAD-box proteins, we conducted a targeted search in Prp8 for cold-insensitive suppressors of a coldsensitive Prp28 mutant, prp28-1. We identified a cluster of suppressor mutations in an N-terminal bromodomain-like sequence of Prp8. To identify the precise defect in prp28-1 strains that is suppressed by the Prp8 alleles, we analyzed spliceosome assembly in vivo and in vitro. Surprisingly, in the prp28-1 strain, we observed a block not only to spliceosome activation but also to one of the earliest steps of assembly, formation of the ATP-independent commitment complex 2 (CC2). The Prp8 suppressor partially corrected both the early assembly and later activation defects of prp28-1, supporting a role for this U5 snRNP protein in both the ATP-independent and ATP-dependent functions of Prp28. We conclude that the U5 snRNP has a role in the earliest events of assembly, prior to its stable incorporation into the spliceosome.
机译:高动态剪接体的逐步组装是由DEAD-box家族的RNA依赖性ATPase指导的,该酶的调控机制尚不清楚。在规范组装模型中,仅在将U1和随后的U2 snRNP连接到含内含子的pre-mRNA之后,U4 / U6.U5三重snRNP才结合。催化激活需要在5'剪接位点用U6交换U1 snRNA,这由DEAD-box蛋白Prp28促进。由于Prp8(一种整合的U5 snRNP蛋白)被认为是DEAD-box蛋白的中央调节剂,因此我们在Prp8中进行了针对性研究,寻找冷敏Prp28突变体prp28-1的冷敏抑制剂。我们在Prp8的N端溴结构域样序列中发现了一组抑制突变。为了确定由Prp8等位基因抑制的prp28-1菌株中的确切缺陷,我们在体内和体外分析了剪接体组装。出人意料的是,在prp28-1菌株中,我们不仅观察到了剪接体激活的阻滞,而且观察到了组装的最早步骤之一,即不依赖A​​TP的承诺复合物2(CC2)的形成。 Prp8抑制剂可部分纠正prp28-1的早期装配和后期激活缺陷,从而支持此U5 snRNP蛋白在Prp28的ATP依赖性和ATP依赖性功能中的作用。我们得出的结论是,在将U5 snRNP稳定掺入剪接体之前,它在最早的组装事件中起作用。

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