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Microbial signals drive pre-leukaemic myeloproliferation in a Tet2-deficient host

Author

Listed:
  • Marlies Meisel

    (University of Chicago
    University of Chicago)

  • Reinhard Hinterleitner

    (University of Chicago
    University of Chicago)

  • Alain Pacis

    (CHU Sainte-Justine Research Center
    Université de Montréal)

  • Li Chen

    (University of Chicago
    University of Chicago)

  • Zachary M. Earley

    (University of Chicago
    University of Chicago)

  • Toufic Mayassi

    (University of Chicago
    University of Chicago)

  • Joseph F. Pierre

    (University of Chicago
    University of Tennessee Health Science Center)

  • Jordan D. Ernest

    (University of Chicago
    University of Chicago)

  • Heather J. Galipeau

    (McMaster University)

  • Nikolaus Thuille

    (Medical University of Innsbruck)

  • Romain Bouziat

    (University of Chicago
    University of Chicago)

  • Manuel Buscarlet

    (Hôpital Maisonneuve-Rosemont)

  • Daina L. Ringus

    (University of Chicago)

  • Yitang Wang

    (University of Chicago)

  • Ye Li

    (University of Chicago)

  • Vu Dinh

    (University of Chicago
    University of Chicago)

  • Sangman M. Kim

    (University of Chicago
    University of Chicago)

  • Benjamin D. McDonald

    (University of Chicago
    University of Chicago)

  • Matthew A. Zurenski

    (University of Chicago
    University of Chicago)

  • Mark W. Musch

    (University of Chicago)

  • Glaucia C. Furtado

    (Icahn School of Medicine at Mount Sinai)

  • Sergio A. Lira

    (Icahn School of Medicine at Mount Sinai)

  • Gottfried Baier

    (Medical University of Innsbruck)

  • Eugene B. Chang

    (University of Chicago)

  • A. Murat Eren

    (University of Chicago
    Marine Biological Laboratory)

  • Christopher R. Weber

    (University of Chicago)

  • Lambert Busque

    (Hôpital Maisonneuve-Rosemont
    Université de Montréal)

  • Lucy A. Godley

    (University of Chicago
    University of Chicago)

  • Elena F. Verdú

    (McMaster University)

  • Luis B. Barreiro

    (CHU Sainte-Justine Research Center
    Université de Montréal)

  • Bana Jabri

    (University of Chicago
    University of Chicago
    University of Chicago)

Abstract

Somatic mutations in tet methylcytosine dioxygenase 2 (TET2), which encodes an epigenetic modifier enzyme, drive the development of haematopoietic malignancies1–7. In both humans and mice, TET2 deficiency leads to increased self-renewal of haematopoietic stem cells with a net developmental bias towards the myeloid lineage1,4,8,9. However, pre-leukaemic myeloproliferation (PMP) occurs in only a fraction of Tet2−/− mice8,9 and humans with TET2 mutations1,3,5–7, suggesting that extrinsic non-cell-autonomous factors are required for disease onset. Here we show that bacterial translocation and increased interleukin-6 production, resulting from dysfunction of the small-intestinal barrier, are critical for the development of PMP in mice that lack Tet2 expression in haematopoietic cells. Furthermore, in symptom-free Tet2−/− mice, PMP can be induced by disrupting intestinal barrier integrity, or in response to systemic bacterial stimuli such as the toll-like receptor 2 agonist. PMP was reversed by antibiotic treatment and failed to develop in germ-free Tet2−/− mice, which illustrates the importance of microbial signals in the development of this condition. Our findings demonstrate the requirement for microbial-dependent inflammation in the development of PMP and provide a mechanistic basis for the variation in PMP penetrance observed in Tet2−/− mice. This study will prompt new lines of investigation that may profoundly affect the prevention and management of haematopoietic malignancies.

Suggested Citation

  • Marlies Meisel & Reinhard Hinterleitner & Alain Pacis & Li Chen & Zachary M. Earley & Toufic Mayassi & Joseph F. Pierre & Jordan D. Ernest & Heather J. Galipeau & Nikolaus Thuille & Romain Bouziat & M, 2018. "Microbial signals drive pre-leukaemic myeloproliferation in a Tet2-deficient host," Nature, Nature, vol. 557(7706), pages 580-584, May.
  • Handle: RePEc:nat:nature:v:557:y:2018:i:7706:d:10.1038_s41586-018-0125-z
    DOI: 10.1038/s41586-018-0125-z
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    Cited by:

    1. J. McClatchy & R. Strogantsev & E. Wolfe & H. Y. Lin & M. Mohammadhosseini & B. A. Davis & C. Eden & D. Goldman & W. H. Fleming & P. Conley & G. Wu & L. Cimmino & H. Mohammed & A. Agarwal, 2023. "Clonal hematopoiesis related TET2 loss-of-function impedes IL1β-mediated epigenetic reprogramming in hematopoietic stem and progenitor cells," Nature Communications, Nature, vol. 14(1), pages 1-17, December.
    2. Jakob Woerner & Yidi Huang & Stephan Hutter & Carmelo Gurnari & Jesús María Hernández Sánchez & Janet Wang & Yimin Huang & Daniel Schnabel & Michael Aaby & Wanying Xu & Vedant Thorat & Dongxu Jiang & , 2022. "Circulating microbial content in myeloid malignancy patients is associated with disease subtypes and patient outcomes," Nature Communications, Nature, vol. 13(1), pages 1-13, December.

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