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真核生物中 RNA 编辑的起源与进化。

On the origin and evolution of RNA editing in metazoans.

机构信息

BGI-Shenzhen, Shenzhen 518083, China; Section for Ecology and Evolution, Department of Biology, University of Copenhagen, 2100 Copenhagen, Denmark.

BGI Research-Wuhan, BGI, Wuhan 430074, China.

出版信息

Cell Rep. 2023 Feb 28;42(2):112112. doi: 10.1016/j.celrep.2023.112112. Epub 2023 Feb 14.

Abstract

Extensive adenosine-to-inosine (A-to-I) editing of nuclear-transcribed mRNAs is the hallmark of metazoan transcriptional regulation. Here, by profiling the RNA editomes of 22 species that cover major groups of Holozoa, we provide substantial evidence supporting A-to-I mRNA editing as a regulatory innovation originating in the last common ancestor of extant metazoans. This ancient biochemistry process is preserved in most extant metazoan phyla and primarily targets endogenous double-stranded RNA (dsRNA) formed by evolutionarily young repeats. We also find intermolecular pairing of sense-antisense transcripts as an important mechanism for forming dsRNA substrates for A-to-I editing in some but not all lineages. Likewise, recoding editing is rarely shared across lineages but preferentially targets genes involved in neural and cytoskeleton systems in bilaterians. We conclude that metazoan A-to-I editing might first emerge as a safeguard mechanism against repeat-derived dsRNA and was later co-opted into diverse biological processes due to its mutagenic nature.

摘要

广泛的核转录 mRNA 的腺嘌呤到肌苷(A-to-I)编辑是后生动物转录调控的标志。在这里,通过对涵盖 Holozoa 主要类群的 22 个物种的 RNA 编辑组进行分析,我们提供了大量证据支持 A-to-I mRNA 编辑是一种起源于现存后生动物最后共同祖先的调节创新。这种古老的生物化学过程在大多数现存后生动物门中都得到了保留,主要针对由进化上较年轻的重复序列形成的内源性双链 RNA (dsRNA)。我们还发现,在一些而不是所有谱系中,顺反子间的配对是形成 dsRNA 底物用于 A-to-I 编辑的重要机制。同样,编码编辑很少在谱系间共享,但优先靶向两侧对称动物的神经和细胞骨架系统中的基因。我们的结论是,后生动物的 A-to-I 编辑可能最初是作为一种针对重复衍生的 dsRNA 的保护机制出现的,后来由于其诱变性质而被不同程度地应用于各种生物学过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d16d/9989829/cb5f601aebe2/fx1.jpg

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