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人类U1 snRNA在mRNA剪接中作用的遗传分析:I. U1高度保守茎环I中突变的影响

Genetic analysis of the role of human U1 snRNA in mRNA splicing: I. Effect of mutations in the highly conserved stem-loop I of U1.

作者信息

Yuo C Y, Weiner A M

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, Connecticut 06510.

出版信息

Genes Dev. 1989 May;3(5):697-707. doi: 10.1101/gad.3.5.697.

Abstract

The 5' splice site mutation known as hr440 can be suppressed efficiently in vivo by a compensatory base change in U1 small nuclear RNA (snRNA). We have now begun a second-site reversion analysis of this suppressor U1-4u snRNA (which has a C----U change at position 4) to identify U1 nucleotides that are essential for mRNA splicing. Point mutations in U1-4u that disrupt the structure of stem-loop I or alter phylogenetically conserved nucleotides within the loop cause loss of suppression. The level of suppressor activity observed for most mutants correlated with the abundance of the corresponding suppressor RNA, suggesting that mutations in stem-loop I cause loss of suppression by destabilizing U1 snRNA or the U1 snRNP (small nuclear ribonucleoprotein particle). We favor the interpretation that incompletely or improperly assembled U1 snRNPs are unstable, because two severe point mutations in stem-loop I were found to decrease the binding of U1 snRNP-specific proteins in vitro. In a separate set of experiments, we found that increasing the distance between stem-loop I and the 5' end of U1 snRNA also inhibited suppression but did not affect assembly or stability of the U1 snRNP. This suggests that the relationship between the 5' splice site and the body of the U1 snRNP is important for mRNA splicing.

摘要

被称为hr440的5'剪接位点突变可在体内被U1小核RNA(snRNA)中的补偿性碱基变化有效抑制。我们现在已经开始对这种抑制性U1-4u snRNA(其在第4位有一个C→U变化)进行第二位点回复分析,以确定对mRNA剪接至关重要的U1核苷酸。U1-4u中的点突变破坏了茎环I的结构或改变了环内系统发育保守的核苷酸,导致抑制作用丧失。大多数突变体观察到的抑制活性水平与相应抑制性RNA的丰度相关,这表明茎环I中的突变通过使U1 snRNA或U1 snRNP(小核核糖核蛋白颗粒)不稳定而导致抑制作用丧失。我们倾向于这样的解释,即组装不完全或不正确的U1 snRNP是不稳定的,因为在茎环I中发现的两个严重点突变在体外降低了U1 snRNP特异性蛋白的结合。在另一组实验中,我们发现增加茎环I与U1 snRNA 5'端之间的距离也会抑制抑制作用,但不影响U1 snRNP的组装或稳定性。这表明5'剪接位点与U1 snRNP主体之间的关系对mRNA剪接很重要。

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