Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, 117997 Moscow, Russia.
Belozersky Institute of Physico-Chemical Biology and Biological Faculty, Lomonosov Moscow State University, 119991 Moscow, Russia.
Int J Mol Sci. 2023 Jan 20;24(3):2114. doi: 10.3390/ijms24032114.
This review aims to consider retrospectively the available data on the coding properties of pri-microRNAs and the regulatory functions of their open reading frames (ORFs) and the encoded peptides (miPEPs). Studies identifying miPEPs and analyzing the fine molecular mechanisms of their functional activities are reviewed together with a brief description of the methods to identify pri-miRNA ORFs and the encoded protein products. Generally, miPEPs have been identified in many plant species of several families and in a few animal species. Importantly, molecular mechanisms of the miPEP action are often quite different between flowering plants and metazoan species. Requirement for the additional studies in these directions is highlighted by alternative findings concerning negative or positive regulation of pri-miRNA/miRNA expression by miPEPs in plants and animals. Additionally, the question of how miPEPs are distributed in non-flowering plant taxa is very important for understanding the evolutionary origin of such micropeptides. Evidently, further extensive studies are needed to explore the functions of miPEPs and the corresponding ORFs and to understand the full set of their roles in eukaryotic organisms. Thus, we address the most recent integrative views of different genomic, physiological, and molecular aspects concerning the expression of miPEPs and their possible fine functions.
这篇综述旨在回顾有关前体 microRNA 的编码特性及其开放阅读框(ORF)和编码肽(miPEP)的调控功能的现有数据。我们将一起回顾鉴定 miPEP 和分析其功能活性的精细分子机制的研究,并简要描述鉴定 pri-miRNA ORF 和编码蛋白产物的方法。一般来说,miPEP 已在几个科的许多植物物种和少数动物物种中被鉴定出来。重要的是,miPEP 在开花植物和后生动物物种中的作用的分子机制往往有很大的不同。鉴于在植物和动物中,miPEP 对 pri-miRNA/miRNA 表达的负调控或正调控的研究结果并不一致,因此强调了在这些方向上进行进一步研究的必要性。此外,miPEP 在非开花植物类群中的分布情况对于理解这些微肽的进化起源非常重要。显然,需要进一步广泛的研究来探索 miPEP 和相应的 ORF 的功能,并了解它们在真核生物中的全部作用。因此,我们针对有关 miPEP 及其可能的精细功能表达的不同基因组、生理和分子方面的最新综合观点进行了探讨。