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Short-term post-fast refeeding enhances intestinal stemness via polyamines

  • Shinya Imada,
  • Saleh Khawaled,
  • Heaji Shin,
  • Sven W. Meckelmann,
  • Charles A. Whittaker,
  • Renan Oliveira Corrêa,
  • Chiara Alquati,
  • Yixin Lu,
  • Guodong Tie,
  • Dikshant Pradhan,
  • Gizem Calibasi-Kocal,
  • Luiza Martins Nascentes Melo,
  • Gabriele Allies,
  • Jonas Rösler,
  • Pia Wittenhofer,
  • Jonathan Krystkiewicz,
  • Oliver J. Schmitz,
  • Jatin Roper,
  • Marco Aurelio Ramirez Vinolo,
  • Luigi Ricciardiello,
  • Evan C. Lien,
  • Matthew G. Vander Heiden,
  • Ramesh A. Shivdasani,
  • Chia-Wei Cheng,
  • Alpaslan Tasdogan,
  • Ömer H. Yilmaz

摘要

For over a century, fasting regimens have improved health, lifespan and tissue regeneration in diverse organisms, including humans16. However, how fasting and post-fast refeeding affect adult stem cells and tumour formation has yet to be explored in depth. Here we demonstrate that post-fast refeeding increases intestinal stem cell (ISC) proliferation and tumour formation; post-fast refeeding augments the regenerative capacity of Lgr5+ ISCs, and loss of the tumour suppressor gene Apc in post-fast-refed ISCs leads to a higher tumour incidence in the small intestine and colon than in the fasted or ad libitum-fed states, demonstrating that post-fast refeeding is a distinct state. Mechanistically, we discovered that robust mTORC1 induction in post-fast-refed ISCs increases protein synthesis via polyamine metabolism to drive these changes, as inhibition of mTORC1, polyamine metabolite production or protein synthesis abrogates the regenerative or tumorigenic effects of post-fast refeeding. Given our findings, fast–refeeding cycles must be carefully considered and tested when planning diet-based strategies for regeneration without increasing cancer risk, as post-fast refeeding leads to a burst in stem-cell-driven regeneration and tumorigenicity.