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布氏锥虫反式剪接前体的受控周转和3'端修剪

Controlled turnover and 3' trimming of the trans splicing precursor of Trypanosoma brucei.

作者信息

Laird P W, ten Asbroek A L, Borst P

机构信息

Division of Molecular Biology, Netherlands Cancer Institute, Amsterdam.

出版信息

Nucleic Acids Res. 1987 Dec 23;15(24):10087-103. doi: 10.1093/nar/15.24.10087.

Abstract

The maturation of mRNAs in Trypanosoma brucei involves a novel step, in which a short capped sequence is spliced in trans onto the 5' end of nascent mRNAs from a 140-nucleotide precursor. This precursor is called the mini-exon-derived RNA or medRNA. We have used drugs and ultraviolet irradiation as inhibitors to probe the synthesis and processing of medRNA in vivo. Inhibition of RNA synthesis by chloroquine shows that the half-life of medRNA is about 4 minutes. Despite this high turnover, only limited accumulation of medRNA could be achieved following a block in the synthesis of high molecular weight splice acceptor substrates by UV irradiation. This implies that there is a constraint on the steady-state levels of medRNA and that excess medRNA is degraded in the cell. A 3' shortened version of medRNA accumulates upon a block in normal medRNA processing by UV irradiation or upon treatment of the cells with actinomycin D or novobiocin but was shown not to participate in trans splicing, making it a likely candidate for an in vivo degradation intermediate.

摘要

布氏锥虫中mRNA的成熟涉及一个新步骤,即一个短的带帽序列通过反式剪接连接到来自140个核苷酸前体的新生mRNA的5'末端。这个前体被称为小外显子衍生RNA或medRNA。我们使用药物和紫外线照射作为抑制剂来探测体内medRNA的合成和加工。氯喹对RNA合成的抑制表明medRNA的半衰期约为4分钟。尽管周转率很高,但在紫外线照射阻断高分子量剪接受体底物的合成后,只能实现有限的medRNA积累。这意味着medRNA的稳态水平存在限制,并且过量的medRNA在细胞中被降解。紫外线照射阻断正常medRNA加工后,或用放线菌素D或新生霉素处理细胞后,medRNA的3'端缩短版本会积累,但已证明其不参与反式剪接,这使其成为体内降解中间体的一个可能候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fc4/339932/4bc4902b71d6/nar00268-0022-a.jpg

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