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U6小核仁RNA与线虫SL RNA反式剪接功能所需序列的相互作用。

Interaction of U6 snRNA with a sequence required for function of the nematode SL RNA in trans-splicing.

作者信息

Hannon G J, Maroney P A, Yu Y T, Hannon G E, Nilsen T W

机构信息

Department of Molecular Biology and Microbiology, Case Western Reserve University School of Medicine, Cleveland, OH 44106.

出版信息

Science. 1992 Dec 11;258(5089):1775-80. doi: 10.1126/science.1465612.

Abstract

Nematode trans-spliced leader (SL) RNAs are composed of two domains, an exon [the 22-nucleotide spliced leader] and a small nuclear RNA (snRNA)-like sequence. Participation in vitro of the spliced leader RNA in trans-splicing reactions is independent of the exon sequence or size and instead depends on features contained in the snRNA-like domain of the molecule. Chemical modification interference analysis has revealed that two short sequence elements in the snRNA-like domain are necessary for SL RNA activity. These elements are sufficient for such activity because when added to a 72-nucleotide fragment of a nematode U1 snRNA, this hybrid RNA could participate in trans-splicing reactions in vitro. One of the critical sequence elements may function by base-pairing with U6 snRNA, an essential U snRNA for both cis- and trans-splicing.

摘要

线虫反式剪接前导(SL)RNA由两个结构域组成,一个外显子[22个核苷酸的剪接前导序列]和一个类似小核RNA(snRNA)的序列。剪接前导RNA在体外参与反式剪接反应与外显子序列或大小无关,而是取决于该分子类似snRNA结构域中包含的特征。化学修饰干扰分析表明,类似snRNA结构域中的两个短序列元件对SL RNA活性是必需的。这些元件足以产生这种活性,因为当添加到线虫U1 snRNA的72个核苷酸片段中时,这种杂交RNA可以在体外参与反式剪接反应。关键序列元件之一可能通过与U6 snRNA碱基配对发挥作用,U6 snRNA是顺式和反式剪接所必需的U snRNA。

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