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U小核核糖核酸(U snRNA)的帽状三甲基化发生在细胞质中,且依赖于U小核核糖核蛋白(U snRNP)的蛋白质结合。

Cap trimethylation of U snRNA is cytoplasmic and dependent on U snRNP protein binding.

作者信息

Mattaj I W

出版信息

Cell. 1986 Sep 12;46(6):905-11. doi: 10.1016/0092-8674(86)90072-3.

Abstract

Trimethyl capping of U2 snRNA has been studied using U2 genes with mutations located in either the 5' flanking or the coding region. A monomethyl (7-methylguanosine) cap is added to U2 cotranscriptionally, trimethylation being posttranscriptional. The immediate 5' flanking sequences have no influence on trimethylation; furthermore, trimethylation is not affected by changing the position and sequence of the cap site. The efficiency of trimethylation is reduced by deleting the Sm binding site from U2 RNA, but it is not altered by other mutations in the coding sequence. Insertion of artificial Sm binding sites either into a mutant U2 from which the natural binding site has been deleted or into SP6 transcripts generated in vitro allows these RNAs to become trimethylated. The trimethylase activity in Xenopus laevis oocytes is cytoplasmic.

摘要

已使用5'侧翼或编码区域存在突变的U2基因对U2小核RNA(snRNA)的三甲基化进行了研究。一个单甲基(7-甲基鸟苷)帽在转录时添加到U2上,三甲基化则是转录后进行的。紧邻的5'侧翼序列对三甲基化没有影响;此外,改变帽位点的位置和序列也不会影响三甲基化。通过从U2 RNA中删除Sm结合位点,三甲基化效率降低,但编码序列中的其他突变不会改变它。将人工Sm结合位点插入已删除天然结合位点的突变U2或体外产生的SP6转录本中,可使这些RNA发生三甲基化。非洲爪蟾卵母细胞中的三甲基化酶活性存在于细胞质中。

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