Skip to main navigation Skip to search Skip to main content

NAC regulates metabolism and cell fate in intestinal stem cells

  • Sofia Ramalho
  • , Ferhat Alkan
  • , Stefan Prekovic
  • , Katarzyna Jastrzebski
  • , Eric Pintó Barberà
  • , Liesbeth Hoekman
  • , Maarten Altelaar
  • , Cecilia de Heus
  • , Nalan Liv
  • , Maria J Rodríguez-Colman
  • , Mehmet Yilmaz
  • , Rob van der Kammen
  • , Juliette Fedry
  • , Mark C de Gooijer
  • , Saskia Jacoba Elisabeth Suijkerbuijk
  • , William J Faller*
  • , Joana Silva*
  • *Corresponding author for this work

    Research output: Contribution to journalArticle (Academic Journal)peer-review

    7 Citations (Scopus)

    Abstract

    Intestinal stem cells (ISCs) face the challenge of integrating metabolic demands with unique regenerative functions. Studies have shown an intricate interplay between metabolism and stem cell capacity; however, it is still not understood how this process is regulated. Combining ribosome profiling and CRISPR screening in intestinal organoids, we identify the nascent polypeptide-associated complex (NAC) as a key mediator of this process. Our findings suggest that NAC is responsible for relocalizing ribosomes to the mitochondria and regulating ISC metabolism. Upon NAC inhibition, intestinal cells show decreased import of mitochondrial proteins, which are needed for oxidative phosphorylation, and, consequently, enable the cell to maintain a stem cell identity. Furthermore, we show that overexpression of NACα is sufficient to drive mitochondrial respiration and promote ISC identity. Ultimately, our results reveal the pivotal role of NAC in regulating ribosome localization, mitochondrial metabolism, and ISC function, providing insights into the potential mechanism behind it.
    Original languageEnglish
    Article numbereadn9750
    Number of pages14
    JournalScience Advances
    Volume11
    Issue number2
    Early online date8 Jan 2025
    DOIs
    Publication statusPublished - 10 Jan 2025

    Bibliographical note

    Publisher Copyright:
    Copyright © 2025 The Authors.

    Keywords

    • Animals
    • Stem Cells/metabolism
    • Mitochondria/metabolism
    • Ribosomes/metabolism
    • Intestines/cytology
    • Mice
    • Cell Differentiation
    • Organoids/metabolism
    • Oxidative Phosphorylation
    • Intestinal Mucosa/metabolism
    • Mitochondrial Proteins/metabolism

    Fingerprint

    Dive into the research topics of 'NAC regulates metabolism and cell fate in intestinal stem cells'. Together they form a unique fingerprint.

    Cite this