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秀丽隐杆线虫保守的SL1反式剪接前导序列的改变表明了体内长度和序列要求的灵活性。

Alterations in the conserved SL1 trans-spliced leader of Caenorhabditis elegans demonstrate flexibility in length and sequence requirements in vivo.

作者信息

Ferguson K C, Rothman J H

机构信息

Department of Molecular, Cellular, and Developmental Biology and Neuroscience Research Institute, University of California, Santa Barbara, California 93106, USA.

出版信息

Mol Cell Biol. 1999 Mar;19(3):1892-900. doi: 10.1128/MCB.19.3.1892.

Abstract

Approximately 70% of mRNAs in Caenorhabditis elegans are trans spliced to conserved 21- to 23-nucleotide leader RNAs. While the function of SL1, the major C. elegans trans-spliced leader, is unknown, SL1 RNA, which contains this leader, is essential for embryogenesis. Efforts to characterize in vivo requirements of the SL1 leader sequence have been severely constrained by the essential role of the corresponding DNA sequences in SL1 RNA transcription. We devised a heterologous expression system that circumvents this problem, making it possible to probe the length and sequence requirements of the SL1 leader without interfering with its transcription. We report that expression of SL1 from a U2 snRNA promoter rescues mutants lacking the SL1-encoding genes and that the essential embryonic function of SL1 is retained when approximately one-third of the leader sequence and/or the length of the leader is significantly altered. In contrast, although all mutant SL1 RNAs were well expressed, more severe alterations eliminate this essential embryonic function. The one non-rescuing mutant leader tested was never detected on messages, demonstrating that part of the leader sequence is essential for trans splicing in vivo. Thus, in spite of the high degree of SL1 sequence conservation, its length, primary sequence, and composition are not critical parameters of its essential embryonic function. However, particular nucleotides in the leader are essential for the in vivo function of the SL1 RNA, perhaps for its assembly into a functional snRNP or for the trans-splicing reaction.

摘要

秀丽隐杆线虫中约70%的mRNA会被反式剪接到保守的21至23个核苷酸的前导RNA上。虽然秀丽隐杆线虫主要的反式剪接前导序列SL1的功能尚不清楚,但包含该前导序列的SL1 RNA对胚胎发育至关重要。由于SL1 RNA转录中相应DNA序列的重要作用,表征SL1前导序列体内需求的努力受到了严重限制。我们设计了一种异源表达系统来规避这个问题,从而能够在不干扰其转录的情况下探究SL1前导序列的长度和序列需求。我们报告称,从U2 snRNA启动子表达SL1可挽救缺乏SL1编码基因的突变体,并且当约三分之一的前导序列和/或前导序列长度发生显著改变时,SL1的基本胚胎功能得以保留。相比之下,尽管所有突变的SL1 RNA都能很好地表达,但更严重的改变会消除这种基本胚胎功能。所测试的一个无挽救作用的突变前导序列在信使RNA上从未被检测到,这表明前导序列的一部分对于体内反式剪接至关重要。因此,尽管SL1序列具有高度保守性,但其长度、一级序列和组成并非其基本胚胎功能的关键参数。然而,前导序列中的特定核苷酸对于SL1 RNA的体内功能至关重要,可能是为了使其组装成功能性的小核核糖核蛋白或用于反式剪接反应。

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