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首页> 外文期刊>RNA >Yeast ortholog of the Drosophila crooked neck protein promotes spliceosome assembly through stable U4/U6.U5 snRNP addition.
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Yeast ortholog of the Drosophila crooked neck protein promotes spliceosome assembly through stable U4/U6.U5 snRNP addition.

机译:果蝇弯曲颈部蛋白的酵母直系同源物通过稳定的U4 / U6.U5 snRNP添加促进剪接体组装。

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摘要

Mutants in the Drosophila crooked neck (crn) gene show an embryonic lethal phenotype with severe developmental defects. The unusual crn protein consists of sixteen tandem repeats of the 34 amino acid tetratricopeptide (TPR) protein recognition domain. Crn-like TPR elements are found in several RNA processing proteins, although it is unknown how the TPR repeats or the crn protein contribute to Drosophila development. We have isolated a Saccharomyces cerevisiae gene, CLF1, that encodes a crooked neck-like factor. CLF1 is an essential gene but the lethal phenotype of a clf1::HIS3 chromosomal null mutant can be rescued by plasmid-based expression of CLF1 or the Drosophila crn open reading frame. Clf1p is required in vivo and in vitro for pre-mRNA 5' splice site cleavage. Extracts depleted of Clf1p arrest spliceosome assembly after U2 snRNP addition but prior to productive U4/U6.U5 association. Yeast two-hybrid analyses and in vitro binding studies show that Clf1p interacts specifically and differentially with the U1 snRNP-Prp40p protein and the yeast U2AF65 homolog, Mud2p. Intriguingly, Prp40p and Mud2p also bind the phylogenetically conserved branchpoint binding protein (BBP/SF1). Our results indicate that Clf1p acts as a scaffolding protein in spliceosome assembly and suggest that Clf1p may support the cross-intron bridge during the prespliceosome-to-spliceosome transition.
机译:果蝇弯曲颈部(crn)基因中的突变体显示具有严重发育缺陷的胚胎致死表型。不寻常的crn蛋白由34个氨基酸的四三肽(TPR)蛋白识别域的十六个串联重复序列组成。尽管尚不知道TPR的重复方式或crn蛋白如何促进果蝇的发育,但在几种RNA处理蛋白中发现了Crn样的TPR元素。我们已经分离出酿酒酵母基因CLF1,该基因编码弯曲的颈部样因子。 CLF1是必不可少的基因,但clf1 :: HIS3染色体无效突变体的致死表型可以通过基于质粒的CLF1表达或果蝇crn开放阅读框来挽救。 Clf1p在体内和体外对于前mRNA 5'剪接位点的切割是必需的。加入U2 snRNP之后但在生产性U4 / U6.U5结合之前,已耗尽Clf1p阻滞剪接体装配的提取物。酵母双杂交分析和体外结合研究表明,Clf1p与U1 snRNP-Prp40p蛋白和酵母U2AF65同源物Mud2p发生特异性和差异性相互作用。有趣的是,Prp40p和Mud2p也结合了系统发育上保守的分支点结合蛋白(BBP / SF1)。我们的结果表明,Clf1p在剪接体组装中充当支架蛋白,并提示Clf1p在剪接体向剪接体过渡过程中可能支持交叉内含子桥。

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