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通过自我剪接的酵母线粒体I组内含子形成互锁RNA环

Interlocked RNA circle formation by a self-splicing yeast mitochondrial group I intron.

作者信息

Tabak H F, Van der Horst G, Kamps A M, Arnberg A C

出版信息

Cell. 1987 Jan 16;48(1):101-10. doi: 10.1016/0092-8674(87)90360-6.

Abstract

RNA containing the aI3 group I intron of the yeast mitochondrial gene encoding cytochrome oxidase subunit I shows self-splicing in vitro. The excised intron, comprising 1514 nucleotides, is partially split into an upstream portion, containing the intronic reading frame, and a downstream portion, containing the typical group I conserved sequence elements. Full-length intron RNA and intron parts occur in linear and circular form. In the transesterification reactions leading to circle formation, only the guanosine nucleotide added during splicing is removed. Reincubation of isolated, complete circular intron RNA under self-splicing conditions leads to formation of free subintronic RNA circles. Under similar conditions, purified linear intron RNA gives rise to a number of circular and linear products, one of which consists of interlocked subintronic RNA circles. These observations suggest that the intron RNA possesses a dynamic structure in which subtle alterations in folding result in the formation of RNA products with different topology.

摘要

含有酵母线粒体基因编码细胞色素氧化酶亚基I的aI3组I型内含子的RNA在体外表现出自我剪接。切除的内含子由1514个核苷酸组成,部分被分割为上游部分(包含内含子阅读框)和下游部分(包含典型的I组保守序列元件)。全长内含子RNA和内含子片段以线性和环状形式存在。在导致环状形成的转酯反应中,只有剪接过程中添加的鸟苷核苷酸被去除。在自我剪接条件下对分离的完整环状内含子RNA进行再孵育会导致游离的亚内含子RNA环形成。在类似条件下,纯化的线性内含子RNA会产生多种环状和线性产物,其中一种由互锁的亚内含子RNA环组成。这些观察结果表明内含子RNA具有动态结构,其中折叠的细微变化会导致形成具有不同拓扑结构的RNA产物。

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