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布氏锥虫反式剪接前体mRNA中分支位点的定位

Mapping of branch sites in trans-spliced pre-mRNAs of Trypanosoma brucei.

作者信息

Patzelt E, Perry K L, Agabian N

机构信息

Intercampus Program, Molecular Parasitology, University of California, San Francisco and Berkeley 94143-1204.

出版信息

Mol Cell Biol. 1989 Oct;9(10):4291-7. doi: 10.1128/mcb.9.10.4291-4297.1989.

Abstract

The process of trans splicing is essential to the maturation of all mRNAs in the Trypanosomatidae, a family of protozoan parasites, and to specific mRNAs in several species of nematode. In Trypanosoma brucei, a 39-nucleotide (nt) leader sequence originating from a small, 139-nt donor RNA (the spliced leader [SL] RNA) is spliced to the 5' end of mRNAs. An intermediate in this trans-splicing process is a Y structure which contains the 3' 100 nt of the SL RNA covalently linked to the pre-mRNA via a 2'-5' phosphodiester bond at the branch point residue. We mapped the branch points in T. brucei alpha- and beta-tubulin pre-mRNAs. The primary branch acceptors for the alpha- and beta-tubulins are 44 and 56 nt upstream of the 3' splice sites, respectively, and are A residues. Minor branch acceptors were detected 42 and 49 nt upstream of the alpha-tubulin splice site and 58 nt upstream of the splice site in beta-tubulin. The regions surrounding these branch points lack homology to the consensus sequences determined for mammalian cells and yeasts; there is also no conservation among the sequences themselves. Thus, the identified sequences suggest that the mechanism of branch point recognition in T. brucei differs from the mechanism of recognition by U2 RNA that has been proposed for other eucaryotes.

摘要

反式剪接过程对于锥虫科(一类原生动物寄生虫)中所有mRNA的成熟以及几种线虫物种中的特定mRNA而言至关重要。在布氏锥虫中,一段源自一个139个核苷酸的小供体RNA(剪接前导序列[SL]RNA)的39个核苷酸的前导序列被剪接到mRNA的5'端。这个反式剪接过程中的一个中间体是Y结构,它包含SL RNA的3'端100个核苷酸,通过分支点残基处的2'-5'磷酸二酯键与前体mRNA共价连接。我们绘制了布氏锥虫α-和β-微管蛋白前体mRNA中的分支点。α-和β-微管蛋白的主要分支受体分别位于3'剪接位点上游44和56个核苷酸处,且均为A残基。在α-微管蛋白剪接位点上游42和49个核苷酸处以及β-微管蛋白剪接位点上游58个核苷酸处检测到了次要分支受体。这些分支点周围的区域与为哺乳动物细胞和酵母确定的共有序列缺乏同源性;序列本身之间也没有保守性。因此,所鉴定的序列表明布氏锥虫中分支点识别机制与已为其他真核生物提出的由U2 RNA识别的机制不同。

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