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线虫剪接前导RNP在反式剪接中的多种功能需求。

Multiple requirements for nematode spliced leader RNP function in trans-splicing.

作者信息

Denker J A, Maroney P A, Yu Y T, Kanost R A, Nilsen T W

机构信息

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

出版信息

RNA. 1996 Aug;2(8):746-55.

Abstract

The 5' exon donor in nematode trans-splicing, the SL RNA, is a small (approximately 100 nt) RNA that resembles cis-spliceosomal U snRNAs. Extensive analyses of the RNA sequence requirements for SL RNA function have revealed four essential elements, the core Sm binding site, three nucleotides immediately downstream of this site, a region of Stem-loop II, and a 5' splice site. Although these elements are necessary and sufficient for SL RNA function in vitro, their respective roles in promoting SL RNA activity have not been elucidated. Furthermore, although it has been shown that assembly of the SL RNA into an Sm RNP is a prerequisite for function, the protein composition of the SL RNP has not been determined. Here, we have used oligoribonucleotide affinity to purify the SL RNP and find that it contains core Sm proteins as well as four specific proteins (175, 40, 30, and 28 kDa). Using in vitro assembly assays; we show that association of the 175- and 30-kDa SL-specific proteins correlates with SL RNP function in trans-splicing. Binding of these proteins depends upon the sequence of the core Sm binding site; SL RNAs containing the U1 snRNA Sm binding site assemble into Sm RNPs that contain core, but not SL-specific proteins. Furthermore, mutational and thiophosphate interference approaches reveal that both the primary nucleotide sequence and a specific phosphate oxygen within a segment of Stemloop II of the SL RNA are required for function. Finally, mutational activation of an unusual cryptic 5' splice site within the SL sequence itself suggests that U5 snRNA may play a primary role in selecting and specifying the 5' splice site in SL addition trans-splicing.

摘要

线虫反式剪接中的5'外显子供体,即SL RNA,是一种小RNA(约100个核苷酸),类似于顺式剪接体U snRNA。对SL RNA功能的RNA序列要求进行的广泛分析揭示了四个必需元件,即核心Sm结合位点、该位点下游紧邻的三个核苷酸、茎环II区域和一个5'剪接位点。尽管这些元件在体外对于SL RNA功能是必要且充分的,但它们在促进SL RNA活性方面各自的作用尚未阐明。此外,尽管已表明SL RNA组装成Sm RNP是功能的先决条件,但SL RNP的蛋白质组成尚未确定。在此,我们利用寡核糖核苷酸亲和法纯化了SL RNP,发现它含有核心Sm蛋白以及四种特异性蛋白质(175、40、30和28 kDa)。通过体外组装试验,我们表明175 kDa和30 kDa的SL特异性蛋白质的结合与反式剪接中SL RNP的功能相关。这些蛋白质的结合取决于核心Sm结合位点的序列;含有U1 snRNA Sm结合位点的SL RNA组装成含有核心蛋白但不含有SL特异性蛋白的Sm RNP。此外,突变和硫代磷酸酯干扰方法表明,SL RNA茎环II片段中的一级核苷酸序列和特定的磷酸氧对于功能都是必需的。最后,SL序列本身内一个不寻常的隐蔽5'剪接位点的突变激活表明,U5 snRNA可能在选择和确定SL添加反式剪接中的5'剪接位点方面起主要作用。

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