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非洲爪蟾内含子编码的U17小核仁RNA是通过其前体在卵母细胞中的核酸外切酶加工产生的。

The Xenopus intron-encoded U17 snoRNA is produced by exonucleolytic processing of its precursor in oocytes.

作者信息

Cecconi F, Mariottini P, Amaldi F

机构信息

Dipartimento di Biologia, Università di Roma Tor Vergata, Italy.

出版信息

Nucleic Acids Res. 1995 Nov 25;23(22):4670-6. doi: 10.1093/nar/23.22.4670.

Abstract

U17 is a small nucleolar RNA encoded in the introns of the Xenopus laevis gene for ribosomal protein S7 (formerly S8, see Note). To study the mechanisms involved in its in vivo processing from S7 transcripts, various in vitro synthesized RNAs embedding a U17 sequence have been microinjected into the germinal vesicle of Xenopus oocytes and their processing analysed. In particular, the Xenopus U17 gene copies a and f and a U17 gene copy from the pufferfish Fugu rubripes have been used. Information about the nature of the processing activities involved in U17 RNA maturation have been sought by injecting transcripts protected from exonucleolytic attack at their 5'-end by capping and/or lengthened at their 3'-end by polyadenylation. The results obtained indicate that U17 RNA processing is a splicing-independent event and that it is mostly or entirely due to exonucleolytic degradation at both the 5'- and 3'-ends of the precursor molecules. Moreover, it is concluded that the enzymes involved are of the processive type. It is suggested that the apparatus for U17 RNA processing is that responsible for the degradation of all excised and debranched introns. Protection from exonucleolytic attack, due to the tight structure and/or to the binding of specific proteins, would be the mechanism by which U17 RNA is produced.

摘要

U17是一种小核仁RNA,由非洲爪蟾核糖体蛋白S7(原S8,见注释)基因的内含子编码。为了研究其从S7转录本进行体内加工的机制,已将各种嵌入U17序列的体外合成RNA显微注射到非洲爪蟾卵母细胞的生发泡中,并对其加工过程进行了分析。特别地,使用了非洲爪蟾U17基因拷贝a和f以及来自河豚红鳍东方鲀的一个U17基因拷贝。通过注射在其5'端通过加帽保护免受核酸外切酶攻击和/或在其3'端通过聚腺苷酸化延长的转录本,来探寻与U17 RNA成熟相关的加工活性的性质信息。所获得的结果表明,U17 RNA加工是一个不依赖剪接的事件,并且它主要或完全归因于前体分子5'端和3'端的核酸外切酶降解。此外,得出的结论是所涉及的酶是持续性类型的。有人提出,负责U17 RNA加工的装置也是负责所有切除和去分支内含子降解的装置。由于紧密结构和/或特定蛋白质的结合而免受核酸外切酶攻击,将是产生U17 RNA的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7a9/307442/07659a1c5abb/nar00022-0147-a.jpg

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