Cargando…

Post-fast refeeding enhances intestinal stem cell-mediated regeneration and tumourigenesis through mTORC1-dependent polyamine synthesis

For more than a century, fasting regimens have improved health, lifespan, and tissue regeneration in diverse organisms, including humans. However, how fasting and post-fast refeeding impact adult stem cells and tumour formation has yet to be explored in depth. Here, we demonstrate that post-fast ref...

Descripción completa

Detalles Bibliográficos
Autores principales: Imada, Shinya, Shin, Heaji, Khawaled, Saleh, Meckelmann, Sven W., Whittaker, Charles A., Corrêa, Renan Oliveira, Pradhan, Dikshant, Calibasi-Kocal, Gizem, Melo, Luiza Martins Nascentes, Allies, Gabriele, Wittenhofer, Pia, Schmitz, Oliver J., Roper, Jatin, Vinolo, Marco Aurelio Ramirez, Cheng, Chia-Wei, Tasdogan, Alpaslan, Yilmaz, Ömer H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Journal Experts 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9882602/
https://www.ncbi.nlm.nih.gov/pubmed/36711807
http://dx.doi.org/10.21203/rs.3.rs-2320717/v1
_version_ 1784879325974102016
author Imada, Shinya
Shin, Heaji
Khawaled, Saleh
Meckelmann, Sven W.
Whittaker, Charles A.
Corrêa, Renan Oliveira
Pradhan, Dikshant
Calibasi-Kocal, Gizem
Melo, Luiza Martins Nascentes
Allies, Gabriele
Wittenhofer, Pia
Schmitz, Oliver J.
Roper, Jatin
Vinolo, Marco Aurelio Ramirez
Cheng, Chia-Wei
Tasdogan, Alpaslan
Yilmaz, Ömer H.
author_facet Imada, Shinya
Shin, Heaji
Khawaled, Saleh
Meckelmann, Sven W.
Whittaker, Charles A.
Corrêa, Renan Oliveira
Pradhan, Dikshant
Calibasi-Kocal, Gizem
Melo, Luiza Martins Nascentes
Allies, Gabriele
Wittenhofer, Pia
Schmitz, Oliver J.
Roper, Jatin
Vinolo, Marco Aurelio Ramirez
Cheng, Chia-Wei
Tasdogan, Alpaslan
Yilmaz, Ömer H.
author_sort Imada, Shinya
collection PubMed
description For more than a century, fasting regimens have improved health, lifespan, and tissue regeneration in diverse organisms, including humans. However, how fasting and post-fast refeeding impact 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(+) intestinal stem cells (ISCs), and loss of the tumour suppressor Apc in ISCs under post-fast refeeding leads to a higher tumour incidence in the small intestine and colon than in the fasted or ad libitum (AL) fed states. This demonstrates that post-fast refeeding is a distinct state. Mechanistically, we discovered that robust induction of mTORC1 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 tumourigenic effects of post-fast refeeding. Thus, fast-refeeding cycles must be carefully considered when planning diet-based strategies for regeneration without increasing cancer risk, as post-fast refeeding leads to a burst not only in stem cell-driven regeneration but also in tumourigenicity.
format Online
Article
Text
id pubmed-9882602
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Journal Experts
record_format MEDLINE/PubMed
spelling pubmed-98826022023-01-28 Post-fast refeeding enhances intestinal stem cell-mediated regeneration and tumourigenesis through mTORC1-dependent polyamine synthesis Imada, Shinya Shin, Heaji Khawaled, Saleh Meckelmann, Sven W. Whittaker, Charles A. Corrêa, Renan Oliveira Pradhan, Dikshant Calibasi-Kocal, Gizem Melo, Luiza Martins Nascentes Allies, Gabriele Wittenhofer, Pia Schmitz, Oliver J. Roper, Jatin Vinolo, Marco Aurelio Ramirez Cheng, Chia-Wei Tasdogan, Alpaslan Yilmaz, Ömer H. Res Sq Article For more than a century, fasting regimens have improved health, lifespan, and tissue regeneration in diverse organisms, including humans. However, how fasting and post-fast refeeding impact 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(+) intestinal stem cells (ISCs), and loss of the tumour suppressor Apc in ISCs under post-fast refeeding leads to a higher tumour incidence in the small intestine and colon than in the fasted or ad libitum (AL) fed states. This demonstrates that post-fast refeeding is a distinct state. Mechanistically, we discovered that robust induction of mTORC1 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 tumourigenic effects of post-fast refeeding. Thus, fast-refeeding cycles must be carefully considered when planning diet-based strategies for regeneration without increasing cancer risk, as post-fast refeeding leads to a burst not only in stem cell-driven regeneration but also in tumourigenicity. American Journal Experts 2023-01-10 /pmc/articles/PMC9882602/ /pubmed/36711807 http://dx.doi.org/10.21203/rs.3.rs-2320717/v1 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Imada, Shinya
Shin, Heaji
Khawaled, Saleh
Meckelmann, Sven W.
Whittaker, Charles A.
Corrêa, Renan Oliveira
Pradhan, Dikshant
Calibasi-Kocal, Gizem
Melo, Luiza Martins Nascentes
Allies, Gabriele
Wittenhofer, Pia
Schmitz, Oliver J.
Roper, Jatin
Vinolo, Marco Aurelio Ramirez
Cheng, Chia-Wei
Tasdogan, Alpaslan
Yilmaz, Ömer H.
Post-fast refeeding enhances intestinal stem cell-mediated regeneration and tumourigenesis through mTORC1-dependent polyamine synthesis
title Post-fast refeeding enhances intestinal stem cell-mediated regeneration and tumourigenesis through mTORC1-dependent polyamine synthesis
title_full Post-fast refeeding enhances intestinal stem cell-mediated regeneration and tumourigenesis through mTORC1-dependent polyamine synthesis
title_fullStr Post-fast refeeding enhances intestinal stem cell-mediated regeneration and tumourigenesis through mTORC1-dependent polyamine synthesis
title_full_unstemmed Post-fast refeeding enhances intestinal stem cell-mediated regeneration and tumourigenesis through mTORC1-dependent polyamine synthesis
title_short Post-fast refeeding enhances intestinal stem cell-mediated regeneration and tumourigenesis through mTORC1-dependent polyamine synthesis
title_sort post-fast refeeding enhances intestinal stem cell-mediated regeneration and tumourigenesis through mtorc1-dependent polyamine synthesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9882602/
https://www.ncbi.nlm.nih.gov/pubmed/36711807
http://dx.doi.org/10.21203/rs.3.rs-2320717/v1
work_keys_str_mv AT imadashinya postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT shinheaji postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT khawaledsaleh postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT meckelmannsvenw postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT whittakercharlesa postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT correarenanoliveira postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT pradhandikshant postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT calibasikocalgizem postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT meloluizamartinsnascentes postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT alliesgabriele postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT wittenhoferpia postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT schmitzoliverj postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT roperjatin postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT vinolomarcoaurelioramirez postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT chengchiawei postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT tasdoganalpaslan postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis
AT yilmazomerh postfastrefeedingenhancesintestinalstemcellmediatedregenerationandtumourigenesisthroughmtorc1dependentpolyaminesynthesis