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锥虫线粒体转录本的尾部特征在转录本特异性方式上发生了发育改变。

Tail characteristics of Trypanosoma brucei mitochondrial transcripts are developmentally altered in a transcript-specific manner.

机构信息

Institute of Parasitology, McGill University, Montreal, QC H9X 3V9, Canada.

Department of Mathematics and Statistics, University of Minnesota Duluth, Duluth, MN 55812, USA.

出版信息

Int J Parasitol. 2018 Feb;48(2):179-189. doi: 10.1016/j.ijpara.2017.08.012. Epub 2017 Nov 1.

Abstract

The intricate life cycle of Trypanosoma brucei requires extensive regulation of gene expression levels of the mtRNAs for adaptation. Post-transcriptional gene regulatory programs, including unencoded mtRNA 3' tail additions, potentially play major roles in this adaptation process. Intriguingly, T. brucei mitochondrial transcripts possess two distinct unencoded 3' tails, each with a differing functional role; i.e., while one type is implicated in RNA stability (in-tails), the other type appears associated with translation (ex-tails). We examined the degree to which tail characteristics differ among cytochrome c oxidase subunits I and III (CO1 and CO3), and NADH dehydrogenase subunit 1 (ND1) transcripts, and to what extent these characteristics differ developmentally. We found that CO1, CO3 and ND1 transcripts possess longer in-tails in the mammalian life stage. By mathematically modelling states of in-tail and ex-tail addition, we determined that the typical length at which an in-tail is extended to become an ex-tail differs by transcript and, in the case of ND1, by life stage. To the best of our knowledge, we provide the first evidence that developmental differences exist in tail length distributions of mtRNAs, underscoring the potential involvement of in-tail and ex-tail populations in mitochondrial post-transcriptional regulation mechanisms.

摘要

布氏锥虫的复杂生命周期需要对 mtRNAs 的基因表达水平进行广泛的调节,以适应环境。转录后基因调控程序,包括未编码的 mtRNA 3' 尾巴添加,可能在这个适应过程中发挥主要作用。有趣的是,布氏锥虫的线粒体转录物具有两个不同的未编码 3' 尾巴,每个尾巴都具有不同的功能;即,一种类型与 RNA 稳定性有关(内尾巴),而另一种类型似乎与翻译有关(外尾巴)。我们研究了尾巴特征在细胞色素 c 氧化酶亚基 I 和 III(CO1 和 CO3)和 NADH 脱氢酶亚基 1(ND1)转录物之间的差异程度,以及这些特征在发育过程中的差异程度。我们发现,CO1、CO3 和 ND1 转录物在哺乳动物生命阶段具有更长的内尾巴。通过对内尾巴和外尾巴添加状态进行数学建模,我们确定了内尾巴延伸成为外尾巴的典型长度因转录物而异,而在 ND1 的情况下,则因生命阶段而异。据我们所知,我们首次提供了 mtRNAs 尾巴长度分布存在发育差异的证据,这强调了内尾巴和外尾巴群体在线粒体转录后调控机制中的潜在作用。

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