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The 18S rRNA Methyltransferase DIMT-1 Regulates Lifespan in the Germline Later in Life.
Rothi, M Hafiz; Haddad, Joseph Al; Sarkar, Gautam Chandra; Mitchell, Wayne; Ying, Kejun; Pohl, Nancy; Sotomayor, Roberto; Natale, Julia; Dellacono, Scarlett; Gladyshev, Vadim N; Greer, Eric Lieberman.
Afiliação
  • Rothi MH; Department of Pediatrics, HMS Initiative for RNA Medicine, Harvard Medical School, Boston MA, USA.
  • Haddad JA; Division of Newborn Medicine, Boston Children's Hospital, Boston MA, USA.
  • Sarkar GC; Division of Newborn Medicine, Boston Children's Hospital, Boston MA, USA.
  • Mitchell W; Department of Pediatrics, Washington University School of Medicine, St. Louis, MO, USA.
  • Ying K; Department of Genetics, Washington University School of Medicine, St. Louis, MO, USA.
  • Pohl N; Division of Genetics, Department of Medicine, Brigham & Women's Hospital, Harvard Medical School, Boston MA 02115, USA.
  • Sotomayor R; Division of Newborn Medicine, Boston Children's Hospital, Boston MA, USA.
  • Natale J; Division of Newborn Medicine, Boston Children's Hospital, Boston MA, USA.
  • Dellacono S; Division of Newborn Medicine, Boston Children's Hospital, Boston MA, USA.
  • Gladyshev VN; Division of Newborn Medicine, Boston Children's Hospital, Boston MA, USA.
  • Greer EL; Department of Pediatrics, HMS Initiative for RNA Medicine, Harvard Medical School, Boston MA, USA.
Res Sq ; 2024 Jun 21.
Article em En | MEDLINE | ID: mdl-38946979
ABSTRACT
Ribosome heterogeneity has emerged as an important regulatory control feature for determining which proteins are synthesized, however, the influence of age on ribosome heterogeneity is not fully understood. Whether mRNA transcripts are selectively translated in young versus old cells and whether dysregulation of this process drives organismal aging is unknown. Here we examined the role of ribosomal RNA (rRNA) methylation in maintaining appropriate translation as organisms age. In a directed RNAi screen, we identified the 18S rRNA N6'-dimethyl adenosine (m6,2A) methyltransferase, dimt-1, as a regulator of C. elegans lifespan and stress resistance. Lifespan extension induced by dimt-1 deficiency required a functional germline and was dependent on the known regulator of protein translation, the Rag GTPase, raga-1, which links amino acid sensing to the mechanistic target of rapamycin complex (mTORC)1. Using an auxin-inducible degron tagged version of dimt-1, we demonstrate that DIMT-1 functions in the germline after mid-life to regulate lifespan. We further found that knock-down of dimt-1 leads to selective translation of transcripts important for stress resistance and lifespan regulation in the C. elegans germline in mid-life including the cytochrome P450 daf-9, which synthesizes a steroid that signals from the germline to the soma to regulate lifespan. We found that dimt-1 induced lifespan extension was dependent on the daf-9 signaling pathway. This finding reveals a new layer of proteome dysfunction, beyond protein synthesis and degradation, as an important regulator of aging. Our findings highlight a new role for ribosome heterogeneity, and specific rRNA modifications, in maintaining appropriate translation later in life to promote healthy aging.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Res Sq Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Res Sq Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Estados Unidos