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Histone H3K4me3 modification is a transgenerational epigenetic signal for lipid metabolism in Caenorhabditis elegans

Author

Listed:
  • Qin-Li Wan

    (Jinan University
    Jinan University
    Jinan University)

  • Xiao Meng

    (Jinan University
    Jinan University)

  • Chongyang Wang

    (Jinan University
    Jinan University)

  • Wenyu Dai

    (Jinan University
    Jinan University)

  • Zhenhuan Luo

    (Jinan University
    Jinan University)

  • Zhinan Yin

    (Jinan University
    Jinan University)

  • Zhenyu Ju

    (Jinan University)

  • Xiaodie Fu

    (Jinan University
    Jinan University)

  • Jing Yang

    (Jinan University
    Jinan University)

  • Qunshan Ye

    (Jinan University
    Jinan University)

  • Zhan-Hui Zhang

    (Jinan University)

  • Qinghua Zhou

    (Jinan University
    Jinan University)

Abstract

As a major risk factor to human health, obesity presents a massive burden to people and society. Interestingly, the obese status of parents can cause progeny’s lipid accumulation through epigenetic inheritance in multiple species. To date, many questions remain as to how lipid accumulation leads to signals that are transmitted across generations. In this study, we establish a nematode model of C. elegans raised on a high-fat diet (HFD) that leads to measurable lipid accumulation, which can transmit the lipid accumulation signal to their multigenerational progeny. Using this model, we find that transcription factors DAF-16/FOXO and SBP-1/SREBP, nuclear receptors NHR-49 and NHR-80, and delta-9 desaturases (fat-5, fat-6, and fat-7) are required for transgenerational lipid accumulation. Additionally, histone H3K4 trimethylation (H3K4me3) marks lipid metabolism genes and increases their transcription response to multigenerational obesogenic effects. In summary, this study establishes an interaction between a network of lipid metabolic genes and chromatin modifications, which work together to achieve transgenerational epigenetic inheritance of obesogenic effects.

Suggested Citation

  • Qin-Li Wan & Xiao Meng & Chongyang Wang & Wenyu Dai & Zhenhuan Luo & Zhinan Yin & Zhenyu Ju & Xiaodie Fu & Jing Yang & Qunshan Ye & Zhan-Hui Zhang & Qinghua Zhou, 2022. "Histone H3K4me3 modification is a transgenerational epigenetic signal for lipid metabolism in Caenorhabditis elegans," Nature Communications, Nature, vol. 13(1), pages 1-14, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-28469-4
    DOI: 10.1038/s41467-022-28469-4
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    Cited by:

    1. Ana Cristina Laranjeira & Simon Berger & Tea Kohlbrenner & Nadja R. Greter & Alex Hajnal, 2024. "Nutritional vitamin B12 regulates RAS/MAPK-mediated cell fate decisions through one-carbon metabolism," Nature Communications, Nature, vol. 15(1), pages 1-18, December.

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