Heritable non-genetic information can regulate a variety of complex phenotypes. However, what specific non-genetic cues are transmitted from parents to their descendants are poorly understood. Here, we perform metabolic methyl-labeling experiments to track the heritable transmission of methylation from ancestors to their descendants in the nematode Caenorhabditis elegans (C. elegans). We find heritable methylation in DNA, RNA, proteins, and lipids. We find that parental starvation elicits reduced fertility, increased heat stress resistance, and extended longevity in fed, naïve progeny. This intergenerational hormesis is accompanied by a heritable increase in N6'-dimethyl adenosine (m(6,2)A) on the 18S ribosomal RNA at adenosines 1735 and 1736. We identified DIMT-1/DIMT1 as the m(6,2)A and BUD-23/BUD23 as the m(7)G methyltransferases in C. elegans that are both required for intergenerational hormesis, while other rRNA methyltransferases are dispensable. This study labels and tracks heritable non-genetic material across generations and demonstrates the importance of rRNA methylation for regulating epigenetic inheritance.
18S rRNA methyltransferases DIMT1 and BUD23 drive intergenerational hormesis.
18S rRNA 甲基转移酶 DIMT1 和 BUD23 驱动代际兴奋效应
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作者:Liberman Noa, Rothi M Hafiz, Gerashchenko Maxim V, Zorbas Christiane, Boulias Konstantinos, MacWhinnie Fiona G, Ying Albert Kejun, Flood Taylor Anya, Al Haddad Joseph, Shibuya Hiroki, Roach Lara, Dong Anna, Dellacona Scarlett, Lafontaine Denis L J, Gladyshev Vadim N, Greer Eric Lieberman
| 期刊: | Molecular Cell | 影响因子: | 16.600 |
| 时间: | 2023 | 起止号: | 2023 Sep 21; 83(18):3268-3282 |
| doi: | 10.1016/j.molcel.2023.08.014 | 研究方向: | 其它 |
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