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参与极耐盐和嗜碱海洋芽孢杆菌 II 类内含子 ORF 的可变剪接。

Alternative splicing by participation of the group II intron ORF in extremely halotolerant and alkaliphilic Oceanobacillus iheyensis.

机构信息

Microbial Genome Research Group, Japan Agency for Marine-Earth Science and Technology, 2–15 Natsushima, Yokosuka 237–0061, Japan.

出版信息

Microbes Environ. 2011;26(1):54-60. doi: 10.1264/jsme2.me10154.

Abstract

Group II introns inserted into genes often undergo splicing at unexpected sites, and participate in the transcription of host genes. We identified five copies of a group II intron, designated Oi.Int, in the genome of an extremely halotolerant and alkaliphilic bacillus, Oceanobacillus iheyensis. The Oi.Int4 differs from the Oi.Int3 at four bases. The ligated exons of the Oi.Int4 could not be detected by RT-PCR assays in vivo or in vitro although group II introns can generally self-splice in vitro without the involvement of an intron-encoded open reading frame (ORF). In the Oi.Int4 mutants with base substitutions within the ORF, ligated exons were detected by in vitro self-splicing. It was clear that the ligation of exons during splicing is affected by the sequence of the intron-encoded ORF since the splice sites corresponded to the joining sites of the intron. In addition, the mutant introns showed unexpected multiple products with alternative 5' splice sites. These findings imply that alternative 5' splicing which causes a functional change of ligated exons presumably has influenced past adaptations of O. iheyensis to various environmental changes.

摘要

内含子 II 组插入基因中经常会在意外的位点进行剪接,并参与宿主基因的转录。我们在一种极端耐盐和碱性的芽孢杆菌 Oceanobacillus iheyensis 的基因组中鉴定出了五个内含子 II 组,命名为 Oi.Int。Oi.Int4 与 Oi.Int3 在四个碱基处存在差异。尽管内含子 II 组通常可以在没有内含子编码的开放阅读框(ORF)参与的情况下在体外自我剪接,但在体内或体外的 RT-PCR 检测中均无法检测到 Oi.Int4 的连接外显子。在 ORF 内碱基替换的 Oi.Int4 突变体中,通过体外自我剪接检测到了连接的外显子。很明显,内含子编码的 ORF 的序列影响了外显子的连接,因为剪接位点与内含子的连接位点相对应。此外,突变内含子显示出意想不到的具有替代 5'剪接位点的多种产物。这些发现表明,导致连接外显子功能改变的替代 5'剪接可能影响了 O. iheyensis 过去对各种环境变化的适应。

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