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The RNA m6A Reader YTHDF2 Is Essential for the Post-transcriptional Regulation of the Maternal Transcriptome and Oocyte Competence.

Published version
Peer-reviewed

Type

Article

Change log

Authors

Ivanova, Ivayla 
Much, Christian 
Di Giacomo, Monica 
Azzi, Chiara 
Morgan, Marcos 

Abstract

YTHDF2 binds and destabilizes N6-methyladenosine (m6A)-modified mRNA. The extent to which this branch of m6A RNA-regulatory pathway functions in vivo and contributes to mammalian development remains unknown. Here we find that YTHDF2 deficiency is partially permissive in mice and results in female-specific infertility. Using conditional mutagenesis, we demonstrate that YTHDF2 is autonomously required within the germline to produce MII oocytes that are competent to sustain early zygotic development. Oocyte maturation is associated with a wave of maternal RNA degradation, and the resulting relative changes to the MII transcriptome are integral to oocyte quality. The loss of YTHDF2 results in the failure to regulate transcript dosage of a cohort of genes during oocyte maturation, with enrichment observed for the YTHDF2-binding consensus and evidence of m6A in these upregulated genes. In summary, the m6A-reader YTHDF2 is an intrinsic determinant of mammalian oocyte competence and early zygotic development.

Description

Keywords

YTHDF2, m(6)A, m(6)A-reader, maternal transcriptome, oocyte maturation, Animals, Binding Sites, Female, Fertility, Gene Expression Regulation, Developmental, Genotype, Infertility, Female, Meiosis, Mice, Inbred C57BL, Mice, Knockout, Oocytes, Phenotype, Protein Binding, RNA Processing, Post-Transcriptional, RNA, Messenger, RNA-Binding Proteins, Transcription, Genetic, Transcriptome, Zygote

Journal Title

Mol Cell

Conference Name

Journal ISSN

1097-2765
1097-4164

Volume Title

67

Publisher

Elsevier BV