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表达而非序列区分了 miR-238 和其 miR-239ab 姐妹 miRNA,使其在秀丽隐杆线虫中促进长寿。

Expression, not sequence, distinguishes miR-238 from its miR-239ab sister miRNAs in promoting longevity in Caenorhabditis elegans.

机构信息

Molecular Biology Department, School of Biological Sciences, University of California, San Diego, La Jolla, California, United States of America.

出版信息

PLoS Genet. 2023 Nov 27;19(11):e1011055. doi: 10.1371/journal.pgen.1011055. eCollection 2023 Nov.

Abstract

MicroRNAs (miRNAs) regulate gene expression by base-pairing to target sequences in messenger RNAs (mRNAs) and recruiting factors that induce translational repression and mRNA decay. In animals, nucleotides 2-8 at the 5' end of the miRNA, called the seed region, are often necessary and sometimes sufficient for functional target interactions. MiRNAs that contain identical seed sequences are grouped into families where individual members have the potential to share targets and act redundantly. A rare exception seemed to be the miR-238/239ab family in Caenorhabditis elegans, as previous work indicated that loss of miR-238 reduced lifespan while deletion of the miR-239ab locus resulted in enhanced longevity and thermal stress resistance. Here, we re-examined these potentially opposing roles using new strains that individually disrupt each miRNA sister. We confirmed that loss of miR-238 is associated with a shortened lifespan but could detect no longevity or stress phenotypes in animals lacking miR-239a or miR-239b, individually or in combination. Additionally, dozens of genes were mis-regulated in miR-238 mutants but almost no gene expression changes were detected in either miR-239a or miR-239b mutants compared to wild type animals. We present evidence that the lack of redundancy between miR-238 and miR-239ab is independent of their sequence differences; miR-239a or miR-239b could substitute for the longevity role of miR-238 when expressed from the miR-238 locus. Altogether, these studies disqualify miR-239ab as negative regulators of aging and demonstrate that expression, not sequence, dictates the specific role of miR-238 in promoting longevity.

摘要

微小 RNA(miRNAs)通过与信使 RNA(mRNA)的靶序列碱基配对并招募诱导翻译抑制和 mRNA 降解的因子来调节基因表达。在动物中,miRNA 5'端的核苷酸 2-8,称为种子区域,通常是功能靶相互作用所必需的,有时也是足够的。含有相同种子序列的 miRNAs 被分为家族,其中各个成员有可能具有共享的靶标并发挥冗余作用。一个罕见的例外似乎是秀丽隐杆线虫中的 miR-238/239ab 家族,因为之前的工作表明 miR-238 的缺失会缩短寿命,而 miR-239ab 基因座的缺失会导致寿命延长和耐热性增强。在这里,我们使用新的菌株重新检查了这些潜在的相反作用,这些菌株分别破坏了每个 miRNA 姐妹。我们证实 miR-238 的缺失与寿命缩短有关,但在缺乏 miR-239a 或 miR-239b 的动物中,无论是单独缺失还是组合缺失,都无法检测到长寿或应激表型。此外,在 miR-238 突变体中,数十个基因被错误调控,但与野生型动物相比,在 miR-239a 或 miR-239b 突变体中几乎没有检测到基因表达变化。我们提供的证据表明,miR-238 和 miR-239ab 之间的冗余缺失独立于它们的序列差异;当从 miR-238 基因座表达时,miR-239a 或 miR-239b 可以替代 miR-238 的长寿作用。总之,这些研究排除了 miR-239ab 作为衰老负调控因子的作用,并表明表达而非序列决定了 miR-238 在促进长寿中的特定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ada/10703411/ba579ef5082d/pgen.1011055.g001.jpg

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