Department of Entomology and Ministry of Agriculture Key Lab of Pest Monitoring and Green Management, College of Plant Protection, China Agricultural University, 100193 Beijing, China.
Front Biosci (Landmark Ed). 2023 Oct 20;28(10):256. doi: 10.31083/j.fbl2810256.
Metazoan adenosine-to-inosine (A-to-I) RNA editing is a highly conserved mechanism that diversifies the transcriptome by post-transcriptionally converting adenosine to inosine. Millions of editing sites have been identified in different species and, based on abnormal editing observed in various disorders, it is intuitive to conclude that RNA editing is both functional and adaptive. In this review, we propose the following major points: (1) "Function/functional" only represents a molecular/phenotypic consequence and is not necessarily connected to "adaptation/adaptive"; (2) Adaptive editing should be judged in the light of evolution and emphasize advantages of temporal-spatial flexibility; (3) Adaptive editing could, in theory, be extended from nonsynonymous sites to all potentially functional sites. This review seeks to conceptually bridge the gap between molecular biology and evolutionary biology and provide a more objective understanding on the biological functions and evolutionary significance of RNA editing.
后生动物腺苷到肌苷(A 到 I)的 RNA 编辑是一种高度保守的机制,通过转录后将腺苷转化为肌苷来使转录组多样化。在不同的物种中已经鉴定出了数百万个编辑位点,并且根据在各种疾病中观察到的异常编辑,直观地得出结论,RNA 编辑是具有功能和适应性的。在这篇综述中,我们提出以下主要观点:(1)“功能/功能性”仅代表一种分子/表型后果,不一定与“适应/适应性”相关;(2)适应性编辑应该根据进化来判断,并强调时间和空间灵活性的优势;(3)适应性编辑理论上可以从非同义位点扩展到所有潜在的功能位点。本综述旨在在分子生物学和进化生物学之间架起概念的桥梁,并对 RNA 编辑的生物学功能和进化意义提供更客观的理解。