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Elevated Levels of a U4/U6.U5 snRNP-Associated Protein, Spp381p, Rescue a Mutant Defective in Spliceosome Maturation

机译:U4 / U6.U5 snRNP相关蛋白Spp381p的水平升高,可挽救剪接体成熟中的突变体。

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摘要

U4 snRNA release from the spliceosome occurs through an essential but ill-defined Prp38p-dependent step. Here we report the results of a dosage suppressor screen to identify genes that contribute to PRP38 function. Elevated expression of a previously uncharacterized gene, SPP381, efficiently suppresses the growth and splicing defects of a temperature-sensitive (Ts) mutant prp38-1. This suppression is specific in that enhanced SPP381 expression does not alter the abundance of intronless RNA transcripts or suppress the Ts phenotypes of other prp mutants. Since SPP381 does not suppress a prp38::LEU2 null allele, it is clear that Spp381p assists Prp38p in splicing but does not substitute for it. Yeast SPP381 disruptants are severely growth impaired and accumulate unspliced pre-mRNA. Immune precipitation studies show that, like Prp38p, Spp381p is present in the U4/U6.U5 tri-snRNP particle. Two-hybrid analyses support the view that the carboxyl half of Spp381p directly interacts with the Prp38p protein. A putative PEST proteolysis domain within Spp381p is dispensable for the Spp381p–Prp38p interaction and for prp38-1 suppression but contributes to Spp381p function in splicing. Curiously, in vitro, Spp381p may not be needed for the chemistry of pre-mRNA splicing. Based on the in vivo and in vitro results presented here, we propose that two small acidic proteins without obvious RNA binding domains, Spp381p and Prp38p, act in concert to promote U4/U5.U6 tri-snRNP function in the spliceosome cycle.
机译:U4 snRNA从剪接体中释放是通过一个基本但不确定的Prp38p依赖性步骤发生的。在这里,我们报告剂量抑制剂筛选的结果,以鉴定有助于PRP38功能的基因。以前未表征的基因SPP381的表达升高,可以有效抑制温度敏感(Ts)突变体prp38-1的生长和剪接缺陷。这种抑制作用是特异性的,因为增强的SPP381表达不会改变无内含子RNA转录物的丰度,也不会抑制其他prp突变体的Ts表型。由于SPP381不会抑制prp38 :: LEU2无效等位基因,因此很明显Spp381p可以协助Prp38p进行剪接,但不能替代它。酵母SPP381破坏剂严重损害了生长,并积累了未剪接的pre-mRNA。免疫沉淀研究表明,与Prp38p一样,Spp381p也存在于U4 / U6.U5 tri-snRNP颗粒中。两杂交分析支持以下观点:Spp381p的羧基一半直接与Prp38p蛋白相互作用。 Spp381p内假定的PEST蛋白水解域对于Spp381p-Prp38p相互作用和prp38-1抑制是必不可少的,但有助于Spp381p的剪接功能。奇怪的是,在体外,pre-mRNA剪接的化学过程可能不需要Spp381p。根据此处显示的体内和体外结果,我们提出了两个没有明显的RNA结合结构域的小酸性蛋白Spp381p和Prp38p协同作用,以在剪接体循环中促进U4 / U5.U6 tri-snRNP功能。

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