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Title:
m6A RNA methylation dynamics during in vitro maturation of cumulus-oocyte complexes derived from adult or prepubertal sheep | Journal of Assisted Reproduction and Genetics
Description:
Purpose N6-methyladenosine (m6A) is the most prevalent base epigenetic modification within eukaryotic mRNAs. It participates in post-transcriptional regulation, including maternal RNA maintenance and decay in mouse oocytes and during maternal-to-zygotic transition. The landscape in other mammalian species remains largely unexplored. The present work analyzed m6A dynamics in sheep cumulus oocyte complexes (COCs), during in vitro maturation. To explore potential relationships with oocyte developmental competence, a previously established model consisting of oocytes derived from adult and prepubertal sheep was adopted. Methods m6a dynamics were analyzed in terms of m6A RNA methylation abundance in cumulus cells (CCs) by colorimetric assay and expression of key m6A methylation-related proteins (METTL3, METTL14, METTL16, VIRMA, YTHDC1, YTHDC2, YTHDF2, YTHDF3, ALKBH5, and FTO) in both cumulus cells and oocytes by real-time PCR. Results We report the dynamics of m6A in sheep COCs, and reveal alterations in both oocytes and cumulus cells derived from prepubertal donors. These changes were observed in terms of m6A RNA methylation levels and transcript dynamics of several m6A methylation-related proteins. Notably, our study shows that dysregulations occur after IVM. Conclusion Overall, this work describes for the first time the dynamics of m6A in sheep COCs and uncovers the involvement of m6A RNA methylation in oocyte developmental potential.
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Keywords {๐}
rna, oocytes, oocyte, prepubertal, methylation, cells, mettl, donors, cumulus, abundance, expression, derived, cocs, ythdf, transcript, maturation, mrna, adult, cell, gene, sheep, fig, wang, regulation, competence, ythdc, maternal, development, total, bebbere, proteins, ccs, zhang, developmental, analyzed, alkbh, ivm, degradation, dynamics, fto, analysis, mouse, observed, levels, ledda, virma, embryo, mii, liu, data,
Topics {โ๏ธ}
mettl3-mediated mrna n6-methyladenosine meiosis-coupled mrna clearance m6a methylation-related proteins post-transcriptional gene regulation n6-methyladenosine-modified rna mrna post-transcriptional regulation guides region-selective methylation n6-methyladenosine methylated mrnas highly conserved yth-domain unrecognized species-specific layers gene-specific annealing temperature n6-methyladenosine modification writingโoriginal draft preparation 15ย ฮผl rnase-free water stem cell research species-specific patterns confirm regulates alternative splicing increased n6-methyladenosine gene regulation related article download pdf post-transcriptional regulation bmc dev biol cumulus-oocyte complexes derived low developmental competence mouse embryonic development cleavage-stage mouse embryos post-transcriptional mechanisms m6a methylation modification vitro-produced embryos derived full size table embryonic germ lineage privacy choices/manage cookies low developmental capacity germinal vesicle stage proper mrna degradation pcr master mix mammalian rna demethylase m6a rna methylation rna m6a methylation impacts rna metabolism rna m6a modification maternally derived khdc3 oocyte developmental competence pre-implantation development impaired rna clearance english language editing correct m6a methylation rna modifying proteins low competence oocytes specific polyadenylation factors
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- RNA m6A modification, signals for degradation or stabilisation?
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mainEntity:
headline:m6A RNA methylation dynamics during in vitro maturation of cumulus-oocyte complexes derived from adult or prepubertal sheep
description:N6-methyladenosine (m6A) is the most prevalent base epigenetic modification within eukaryotic mRNAs. It participates in post-transcriptional regulation, including maternal RNA maintenance and decay in mouse oocytes and during maternal-to-zygotic transition. The landscape in other mammalian species remains largely unexplored. The present work analyzed m6A dynamics in sheep cumulus oocyte complexes (COCs), during in vitro maturation. To explore potential relationships with oocyte developmental competence, a previously established model consisting of oocytes derived from adult and prepubertal sheep was adopted. m6a dynamics were analyzed in terms of m6A RNA methylation abundance in cumulus cells (CCs) by colorimetric assay and expression of key m6A methylation-related proteins (METTL3, METTL14, METTL16, VIRMA, YTHDC1, YTHDC2, YTHDF2, YTHDF3, ALKBH5, and FTO) in both cumulus cells and oocytes by real-time PCR. We report the dynamics of m6A in sheep COCs, and reveal alterations in both oocytes and cumulus cells derived from prepubertal donors. These changes were observed in terms of m6A RNA methylation levels and transcript dynamics of several m6A methylation-related proteins. Notably, our study shows that dysregulations occur after IVM. Overall, this work describes for the first time the dynamics of m6A in sheep COCs and uncovers the involvement of m6A RNA methylation in oocyte developmental potential.
datePublished:2025-03-18T00:00:00Z
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Oocyte
Cumulus cells
Post-transcriptional regulation
m6A methylation-related proteins
Developmental competence
Epitranscriptomics
Gynecology
Reproductive Medicine
Human Genetics
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headline:m6A RNA methylation dynamics during in vitro maturation of cumulus-oocyte complexes derived from adult or prepubertal sheep
description:N6-methyladenosine (m6A) is the most prevalent base epigenetic modification within eukaryotic mRNAs. It participates in post-transcriptional regulation, including maternal RNA maintenance and decay in mouse oocytes and during maternal-to-zygotic transition. The landscape in other mammalian species remains largely unexplored. The present work analyzed m6A dynamics in sheep cumulus oocyte complexes (COCs), during in vitro maturation. To explore potential relationships with oocyte developmental competence, a previously established model consisting of oocytes derived from adult and prepubertal sheep was adopted. m6a dynamics were analyzed in terms of m6A RNA methylation abundance in cumulus cells (CCs) by colorimetric assay and expression of key m6A methylation-related proteins (METTL3, METTL14, METTL16, VIRMA, YTHDC1, YTHDC2, YTHDF2, YTHDF3, ALKBH5, and FTO) in both cumulus cells and oocytes by real-time PCR. We report the dynamics of m6A in sheep COCs, and reveal alterations in both oocytes and cumulus cells derived from prepubertal donors. These changes were observed in terms of m6A RNA methylation levels and transcript dynamics of several m6A methylation-related proteins. Notably, our study shows that dysregulations occur after IVM. Overall, this work describes for the first time the dynamics of m6A in sheep COCs and uncovers the involvement of m6A RNA methylation in oocyte developmental potential.
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Oocyte
Cumulus cells
Post-transcriptional regulation
m6A methylation-related proteins
Developmental competence
Epitranscriptomics
Gynecology
Reproductive Medicine
Human Genetics
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