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BMP feed-forward loop promotes terminal differentiation in gastric glands and is interrupted by H. pylori-driven inflammation

Author

Listed:
  • Marta Kapalczynska

    (Charité University Medicine
    Max Planck Institute for Infection Biology)

  • Manqiang Lin

    (Charité University Medicine
    Max Planck Institute for Infection Biology)

  • Jeroen Maertzdorf

    (Max Planck Institute for Infection Biology)

  • Julian Heuberger

    (Charité University Medicine
    Max Planck Institute for Infection Biology)

  • Stefanie Muellerke

    (Charité University Medicine)

  • Xiangsheng Zuo

    (The University of Texas MD Anderson Cancer Center)

  • Ramon Vidal

    (Max Delbrück Center for Molecular Medicine)

  • Imad Shureiqi

    (The University of Texas MD Anderson Cancer Center)

  • Anne-Sophie Fischer

    (Charité University Medicine)

  • Sascha Sauer

    (Max Delbrück Center for Molecular Medicine)

  • Hilmar Berger

    (Charité University Medicine
    Max Planck Institute for Infection Biology)

  • Evelyn Kidess

    (Charité University Medicine)

  • Hans-Joachim Mollenkopf

    (Max Planck Institute for Infection Biology)

  • Frank Tacke

    (Charité University Medicine)

  • Thomas F. Meyer

    (Max Planck Institute for Infection Biology
    Christian Albrechts University of Kiel)

  • Michael Sigal

    (Charité University Medicine
    Max Planck Institute for Infection Biology
    Max Delbrück Center for Molecular Medicine
    Berlin Institute of Health)

Abstract

Helicobacter pylori causes gastric inflammation, gland hyperplasia and is linked to gastric cancer. Here, we studied the interplay between gastric epithelial stem cells and their stromal niche under homeostasis and upon H. pylori infection. We find that gastric epithelial stem cell differentiation is orchestrated by subsets of stromal cells that either produce BMP inhibitors in the gland base, or BMP ligands at the surface. Exposure to BMP ligands promotes a feed-forward loop by inducing Bmp2 expression in the epithelial cells themselves, enforcing rapid lineage commitment to terminally differentiated mucous pit cells. H. pylori leads to a loss of stromal and epithelial Bmp2 expression and increases expression of BMP inhibitors, promoting self-renewal of stem cells and accumulation of gland base cells, which we mechanistically link to IFN-γ signaling. Mice that lack IFN-γ signaling show no alterations of BMP gradient upon infection, while exposure to IFN-γ resembles H. pylori-driven mucosal responses.

Suggested Citation

  • Marta Kapalczynska & Manqiang Lin & Jeroen Maertzdorf & Julian Heuberger & Stefanie Muellerke & Xiangsheng Zuo & Ramon Vidal & Imad Shureiqi & Anne-Sophie Fischer & Sascha Sauer & Hilmar Berger & Evel, 2022. "BMP feed-forward loop promotes terminal differentiation in gastric glands and is interrupted by H. pylori-driven inflammation," Nature Communications, Nature, vol. 13(1), pages 1-18, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-29176-w
    DOI: 10.1038/s41467-022-29176-w
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    References listed on IDEAS

    as
    1. Michael Sigal & Catriona Y. Logan & Marta Kapalczynska & Hans-Joachim Mollenkopf & Hilmar Berger & Bertram Wiedenmann & Roeland Nusse & Manuel R. Amieva & Thomas F. Meyer, 2017. "Stromal R-spondin orchestrates gastric epithelial stem cells and gland homeostasis," Nature, Nature, vol. 548(7668), pages 451-455, August.
    2. Christine Harnack & Hilmar Berger & Agne Antanaviciute & Ramon Vidal & Sascha Sauer & Alison Simmons & Thomas F. Meyer & Michael Sigal, 2019. "R-spondin 3 promotes stem cell recovery and epithelial regeneration in the colon," Nature Communications, Nature, vol. 10(1), pages 1-15, December.
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    5. Ji-Eun Kim & Lijiang Fei & Wen-Chi Yin & Sabrina Coquenlorge & Abilasha Rao-Bhatia & Xiaoyun Zhang & Sammy Shun Wai Shi & Ju Hee Lee & Noah A. Hahn & Wasi Rizvi & Kyoung-Han Kim & Hoon-Ki Sung & Chi-c, 2020. "Single cell and genetic analyses reveal conserved populations and signaling mechanisms of gastrointestinal stromal niches," Nature Communications, Nature, vol. 11(1), pages 1-15, December.
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    1. Manqiang Lin & Kimberly Hartl & Julian Heuberger & Giulia Beccaceci & Hilmar Berger & Hao Li & Lichao Liu & Stefanie Müllerke & Thomas Conrad & Felix Heymann & Andrew Woehler & Frank Tacke & Nikolaus , 2023. "Establishment of gastrointestinal assembloids to study the interplay between epithelial crypts and their mesenchymal niche," Nature Communications, Nature, vol. 14(1), pages 1-14, December.

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