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PMID: 33298889 Published · epublish English

Argonaute 2 is a key regulator of maternal mRNA degradation in mouse early embryos.

Cell death discovery ·Vol. 6 ·No. 1 ·2020-11-27

Zhang JM, Hou WB, Du JW, Zong M, Zheng KL, Wang WJ, Wang JQ, Zhang H, Mu YS, Yin Z, Ding CM, Sun QY, Liu ZH, Kong QR

Abstract

In mammalian early embryos, the transition from maternal to embryonic control of gene expression requires timely degradation of a subset of maternal mRNAs (MRD). Recently, zygotic genome activation (ZGA)-dependent MRD has been characterized in mouse 2-cell embryo. However, in early embryos, the dynamics of MRD is still poorly understood, and the maternal factor-mediated MRD before and along with ZGA has not been investigated. Argonaute 2 (Ago2) is highly expressed in mouse oocyte and early embryos. In this study, we showed that Ago2-dependent degradation involving RNA interference (RNAi) and RNA activation (RNAa) pathways contributes to the decay of over half of the maternal mRNAs in mouse early embryos. We demonstrated that AGO2 guided by endogenous small interfering RNAs (endosiRNAs), generated from double-stranded RNAs (dsRNAs) formed by maternal mRNAs with their complementary long noncoding RNAs (CMR-lncRNAs), could target maternal mRNAs and cooperate with P-bodies to promote MRD. In addition, we also showed that AGO2 may interact with small activating RNAs (saRNAs) to activate Yap1 and Tead4, triggering ZGA-dependent MRD. Thus, Ago2-dependent degradation is required for timely elimination of subgroups of maternal mRNAs and facilitates the transition between developmental states.

Article Info
Journal
Cell death discovery
Abbr.
Cell Death Discov
ISSN
2058-7716
Published
2020-11-27
Language
English
Country/Region
United States
NLM ID
101665035
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