piRNA processing within non-membrane structures is governed by constituent proteins and their functional motifs.

Ritsuko Suyama, Toshie Kai
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Abstract

Discovered two decades ago, PIWI-interacting RNAs (piRNAs) are crucial for silencing transposable elements (TEs) in animal gonads, thereby protecting the germline genome from harmful transposition, and ensuring species continuity. Silencing of TEs is achieved through transcriptional and post-transcriptional suppression by piRNAs and the PIWI clade of Argonaute proteins within non-membrane structured organelle. These structures are composed of proteins involved in piRNA processing, including PIWIs and other proteins by distinct functional motifs such as the Tudor domain, LOTUS, and intrinsic disordered regions (IDRs). This review highlights recent advances in understanding the roles of these conserved proteins and structural motifs in piRNA biogenesis. We explore the molecular mechanisms of piRNA biogenesis, with a primary focus on Drosophila as a model organism, identifying common themes and species-specific variations. Additionally, we extend the discussion to the roles of these components in nongonadal tissues.

piRNA在非膜结构中的加工是由组成蛋白及其功能基序控制的。
二十年前发现的piwi相互作用rna (piRNAs)对于沉默动物性腺中的转座因子(te)至关重要,从而保护种系基因组免受有害转座,并确保物种连续性。te的沉默是通过pirna和非膜结构细胞器中Argonaute蛋白的PIWI分支的转录和转录后抑制来实现的。这些结构由参与piRNA加工的蛋白质组成,包括piwi和其他具有不同功能基序的蛋白质,如Tudor结构域、LOTUS和内在无序区(IDRs)。本文综述了在了解这些保守蛋白和结构基序在piRNA生物发生中的作用方面的最新进展。我们探索piRNA生物发生的分子机制,主要关注作为模式生物的果蝇,确定共同主题和物种特异性变异。此外,我们将讨论扩展到这些成分在非生殖组织中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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