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Drosophila activins adapt gut size to food intake and promote regenerative growth

Author

Listed:
  • Christian F. Christensen

    (University of Copenhagen)

  • Quentin Laurichesse

    (University of Copenhagen)

  • Rihab Loudhaief

    (University of Copenhagen)

  • Julien Colombani

    (University of Copenhagen)

  • Ditte S. Andersen

    (University of Copenhagen)

Abstract

Rapidly renewable tissues adapt different strategies to cope with environmental insults. While tissue repair is associated with increased intestinal stem cell (ISC) proliferation and accelerated tissue turnover rates, reduced calorie intake triggers a homeostasis-breaking process causing adaptive resizing of the gut. Here we show that activins are key drivers of both adaptive and regenerative growth. Activin-β (Actβ) is produced by stem and progenitor cells in response to intestinal infections and stimulates ISC proliferation and turnover rates to promote tissue repair. Dawdle (Daw), a divergent Drosophila activin, signals through its receptor, Baboon, in progenitor cells to promote their maturation into enterocytes (ECs). Daw is dynamically regulated during starvation-refeeding cycles, where it couples nutrient intake with progenitor maturation and adaptive resizing of the gut. Our results highlight an activin-dependent mechanism coupling nutrient intake with progenitor-to-EC maturation to promote adaptive resizing of the gut and further establish activins as key regulators of adult tissue plasticity.

Suggested Citation

  • Christian F. Christensen & Quentin Laurichesse & Rihab Loudhaief & Julien Colombani & Ditte S. Andersen, 2024. "Drosophila activins adapt gut size to food intake and promote regenerative growth," Nature Communications, Nature, vol. 15(1), pages 1-12, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-023-44553-9
    DOI: 10.1038/s41467-023-44553-9
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    References listed on IDEAS

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    1. Dafni Hadjieconomou & George King & Pedro Gaspar & Alessandro Mineo & Laura Blackie & Tomotsune Ameku & Chris Studd & Alex Mendoza & Fengqiu Diao & Benjamin H. White & André E. X. Brown & Pierre-Yves , 2020. "Enteric neurons increase maternal food intake during reproduction," Nature, Nature, vol. 587(7834), pages 455-459, November.
    2. Kalpana Makhijani & Brandy Alexander & Deepti Rao & Sophia Petraki & Leire Herboso & Katelyn Kukar & Itrat Batool & Stephanie Wachner & Katrina S. Gold & Corinna Wong & Michael B. O’Connor & Katja Brü, 2017. "Regulation of Drosophila hematopoietic sites by Activin-β from active sensory neurons," Nature Communications, Nature, vol. 8(1), pages 1-12, December.
    3. Ömer H. Yilmaz & Pekka Katajisto & Dudley W. Lamming & Yetis Gültekin & Khristian E. Bauer-Rowe & Shomit Sengupta & Kivanc Birsoy & Abdulmetin Dursun & V. Onur Yilmaz & Martin Selig & G. Petur Nielsen, 2012. "mTORC1 in the Paneth cell niche couples intestinal stem-cell function to calorie intake," Nature, Nature, vol. 486(7404), pages 490-495, June.
    4. Craig A. Micchelli & Norbert Perrimon, 2006. "Evidence that stem cells reside in the adult Drosophila midgut epithelium," Nature, Nature, vol. 439(7075), pages 475-479, January.
    5. Benjamin Ohlstein & Allan Spradling, 2006. "The adult Drosophila posterior midgut is maintained by pluripotent stem cells," Nature, Nature, vol. 439(7075), pages 470-474, January.
    6. Dafni Hadjieconomou & George King & Pedro Gaspar & Alessandro Mineo & Laura Blackie & Tomotsune Ameku & Chris Studd & Alex Mendoza & Fengqiu Diao & Benjamin H. White & André E. X. Brown & Pierre-Yves , 2020. "Author Correction: Enteric neurons increase maternal food intake during reproduction," Nature, Nature, vol. 588(7839), pages 36-36, December.
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