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一个II类内含子侵入了固氮菌属,并插入到必需的groEL基因的终止密码子内。

A group II intron has invaded the genus Azotobacter and is inserted within the termination codon of the essential groEL gene.

作者信息

Ferat Jean-Luc, Le Gouar Martine, Michel François

机构信息

Centre de Génétique Moléculaire du CNRS, 91190 Gif-sur-Yvette, France.

出版信息

Mol Microbiol. 2003 Sep;49(5):1407-23. doi: 10.1046/j.1365-2958.2003.03649.x.

Abstract

A group II intron that was previously identified within Azotobacter vinelandii by polymerase chain reac-tion with consensus primers has been completely sequenced, together with its flanking exons. In contrast to other bacterial members of group II, which are associated with mobile or other presumably non-essential DNA, the A. vinelandii intron is inserted within the termination codon of the groEL coding sequence, which it changes from UAA to UAG. Both the host gene and the intron appear to be functional as (i) the ribozyme component of the intron self-splices in vitro and (ii) both intron-carrying and intronless versions of the single-copy groEL gene from A. vinelandii complement groEL mutations in Escherichia coli. Moreover, analysis of nucleotide substitutions within and around a closely related intron sequence that is present at the same site in Azotobacter chroococcum provides indirect evidence of intron transposition posterior to the divergence of the two Azotobacter taxa. Somewhat surprisingly, however, analyses of RNA extracted from cells that had or had not undergone a heat shock show that the bulk of groEL transcripts end within the first 140 nucleotides of the intron. These findings are discussed in the light of our current knowledge of the biochemistry of group II introns.

摘要

通过与共有引物进行聚合酶链反应,先前在维涅兰德固氮菌中鉴定出的一个II组内含子及其侧翼外显子已被完全测序。与其他与可移动或其他可能非必需DNA相关的II组细菌成员不同,维涅兰德固氮菌内含子插入到groEL编码序列的终止密码子内,使其从UAA变为UAG。宿主基因和内含子似乎都具有功能,因为(i)内含子的核酶成分在体外自我剪接,以及(ii)来自维涅兰德固氮菌的单拷贝groEL基因的携带内含子和不含内含子的版本都能互补大肠杆菌中的groEL突变。此外,对在褐球固氮菌相同位点存在的密切相关内含子序列内部和周围的核苷酸取代分析,提供了两个固氮菌类群分化后内含子的间接证据。然而,有点令人惊讶的是,对从未受热激和受热激的细胞中提取的RNA的分析表明,大部分groEL转录本在内含子的前140个核苷酸内结束。根据我们目前对II组内含子生物化学的了解,对这些发现进行了讨论。

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