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COB内含子5的剪接需要内部引导序列与两侧外显子之间进行配对。

Splicing of COB intron 5 requires pairing between the internal guide sequence and both flanking exons.

作者信息

Partono S, Lewin A S

机构信息

Department of Immunology and Medical Microbiology, University of Florida College of Medicine, Gainesville 32610.

出版信息

Proc Natl Acad Sci U S A. 1990 Nov;87(21):8192-6. doi: 10.1073/pnas.87.21.8192.

Abstract

Group I introns are characterized by a set of conserved sequence elements and secondary structures. Evidence supporting the pairing of certain of these sequences has come from the comparison of intron sequences and from the analysis of mutations that disrupt splicing by interfering with pairing. One of the structures proposed for all group I introns is an internal guide sequence that base pairs with the upstream and the downstream exons, bringing them into alignment for ligation. We made specific mutations in the internal guide sequence and the flanking exons of the fifth intron in the yeast mitochondrial gene for apocytochrome b (COB). Mutations that disrupted the pairing between the internal guide sequence and the upstream exon (the P1 pairing) blocked addition of guanosine to the 5' end of the intron during autocatalytic reactions and prevented formation of the full-length circular intron. In contrast, transcripts containing mutations that disrupted the pairing between the guide sequence and the downstream exon (the P10 helix) initiated splicing but failed to ligate exons. Compensatory mutations that restored helices of normal stability mitigated the effects of the original mutations. These data provide direct evidence for the importance of the base pairing between the internal guide sequence and the downstream exon in the splicing of a wild-type group I intron.

摘要

I 组内含子的特征是具有一组保守的序列元件和二级结构。支持其中某些序列配对的证据来自内含子序列的比较以及对通过干扰配对破坏剪接的突变的分析。为所有 I 组内含子提出的结构之一是内部引导序列,它与上游和下游外显子形成碱基对,使它们对齐以便连接。我们在酵母线粒体基因中细胞色素 b(COB)的第五个内含子的内部引导序列和侧翼外显子中进行了特定突变。破坏内部引导序列与上游外显子之间配对(P1 配对)的突变在自催化反应期间阻止了鸟苷添加到内含子的 5' 末端,并阻止了全长环状内含子的形成。相比之下,含有破坏引导序列与下游外显子之间配对(P10 螺旋)的突变的转录本开始剪接但未能连接外显子。恢复正常稳定性螺旋的补偿性突变减轻了原始突变的影响。这些数据为野生型 I 组内含子剪接中内部引导序列与下游外显子之间碱基配对的重要性提供了直接证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39e1/54921/ae795ced0347/pnas01046-0016-a.jpg

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