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Alternative splicing of METTL3 explains apparently METTL3-independent m6A modifications in mRNA.
Poh, Hui Xian; Mirza, Aashiq H; Pickering, Brian F; Jaffrey, Samie R.
Afiliación
  • Poh HX; Department of Pharmacology, Weill Cornell Medicine, Cornell University, New York, New York, United States of America.
  • Mirza AH; Department of Pharmacology, Weill Cornell Medicine, Cornell University, New York, New York, United States of America.
  • Pickering BF; Department of Pharmacology, Weill Cornell Medicine, Cornell University, New York, New York, United States of America.
  • Jaffrey SR; Department of Pharmacology, Weill Cornell Medicine, Cornell University, New York, New York, United States of America.
PLoS Biol ; 20(7): e3001683, 2022 07.
Article en En | MEDLINE | ID: mdl-35853000
ABSTRACT
N6-methyladenosine (m6A) is a highly prevalent mRNA modification that promotes degradation of transcripts encoding proteins that have roles in cell development, differentiation, and other pathways. METTL3 is the major methyltransferase that catalyzes the formation of m6A in mRNA. As 30% to 80% of m6A can remain in mRNA after METTL3 depletion by CRISPR/Cas9-based methods, other enzymes are thought to catalyze a sizable fraction of m6A. Here, we reexamined the source of m6A in the mRNA transcriptome. We characterized mouse embryonic stem cell lines that continue to have m6A in their mRNA after Mettl3 knockout. We show that these cells express alternatively spliced Mettl3 transcript isoforms that bypass the CRISPR/Cas9 mutations and produce functionally active methyltransferases. We similarly show that other reported METTL3 knockout cell lines express altered METTL3 proteins. We find that gene dependency datasets show that most cell lines fail to proliferate after METTL3 deletion, suggesting that reported METTL3 knockout cell lines express altered METTL3 proteins rather than have full knockout. Finally, we reassessed METTL3's role in synthesizing m6A using an exon 4 deletion of Mettl3 and found that METTL3 is responsible for >95% of m6A in mRNA. Overall, these studies suggest that METTL3 is responsible for the vast majority of m6A in the transcriptome, and that remaining m6A in putative METTL3 knockout cell lines is due to the expression of altered but functional METTL3 isoforms.
Asunto(s)

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: ARN Mensajero / Adenosina / Empalme Alternativo / Metiltransferasas Límite: Animals Idioma: En Revista: PLoS Biol Asunto de la revista: BIOLOGIA Año: 2022 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: ARN Mensajero / Adenosina / Empalme Alternativo / Metiltransferasas Límite: Animals Idioma: En Revista: PLoS Biol Asunto de la revista: BIOLOGIA Año: 2022 Tipo del documento: Article País de afiliación: Estados Unidos