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转录组范围内对 piRNA 结合位点的分析表明,不同的机制调节 piRNA 在. 中的结合和沉默。

Transcriptome-wide analyses of piRNA binding sites suggest distinct mechanisms regulate piRNA binding and silencing in .

机构信息

Department of Electrical Engineering, National Cheng Kung University, Tainan 701, Taiwan.

Department of Molecular Genetics and Cell Biology, University of Chicago, Chicago, Illinois 60637, USA.

出版信息

RNA. 2023 May;29(5):557-569. doi: 10.1261/rna.079441.122. Epub 2023 Feb 3.

Abstract

PIWI-interacting RNAs (piRNAs) protect genome integrity by silencing transposon mRNAs and some endogenous mRNAs in various animals. However, piRNAs only trigger gene silencing at select predicted targeting sites, suggesting additional cellular mechanisms regulate piRNA silencing. To gain insight into possible mechanisms, we compared the transcriptome-wide predicted piRNA targeting sites to the in vivo piRNA binding sites. Surprisingly, while sequence-based predicted piRNA targeting sites are enriched in 3' UTRs, we found that piRNAs preferentially bind to coding regions (CDS) of target mRNAs, leading to preferential production of secondary silencing small RNAs in the CDS. However, our analyses suggest that this CDS binding preference cannot be explained by the action of antisilencing Argonaute CSR-1. Instead, our analyses imply that CSR-1 protects mRNAs from piRNA silencing through two distinct mechanisms-by inhibiting piRNA binding across the entire CSR-1 targeted transcript, and by inhibiting secondary silencing small RNA production locally at CSR-1 bound sites. Together, our work identifies the CDS as the critical region that is uniquely competent for piRNA binding in We speculate the CDS binding preference may have evolved to allow the piRNA pathway to maintain robust recognition of RNA targets in spite of genetic drift. Together, our analyses revealed that distinct mechanisms are responsible for restricting piRNA binding and silencing to achieve proper transcriptome surveillance.

摘要

PIWI 相互作用 RNA(piRNAs)通过沉默转座子 mRNA 和一些动物中的内源性 mRNA 来保护基因组完整性。然而,piRNAs 仅在选择的预测靶向位点触发基因沉默,这表明其他细胞机制调节 piRNA 沉默。为了深入了解可能的机制,我们将转录组范围内预测的 piRNA 靶向位点与体内 piRNA 结合位点进行了比较。令人惊讶的是,尽管基于序列的预测 piRNA 靶向位点富含 3'UTR,但我们发现 piRNAs 优先结合靶 mRNA 的编码区(CDS),导致 CDS 中优先产生二级沉默小 RNA。然而,我们的分析表明,这种 CDS 结合偏好不能用抗沉默 Argonaute CSR-1 的作用来解释。相反,我们的分析表明,CSR-1 通过两种不同的机制来保护 mRNA 免受 piRNA 沉默的影响-通过抑制整个 CSR-1 靶向转录本上的 piRNA 结合,以及通过抑制 CSR-1 结合位点的局部二级沉默小 RNA 产生。总之,我们的工作确定了 CDS 是 piRNA 结合的关键区域,在 We 中具有独特的能力。我们推测 CDS 结合偏好可能是为了允许 piRNA 途径在遗传漂移的情况下仍然能够稳健地识别 RNA 靶标而进化而来的。总之,我们的分析表明,不同的机制负责限制 piRNA 结合和沉默以实现适当的转录组监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d79/10158993/7754bffb771a/557f01.jpg

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