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The AIM2 inflammasome exacerbates atherosclerosis in clonal haematopoiesis

Author

Listed:
  • Trevor P. Fidler

    (Columbia University Irving Medical Center)

  • Chenyi Xue

    (Columbia University Irving Medical Center
    Columbia University Irving Medical Center)

  • Mustafa Yalcinkaya

    (Columbia University Irving Medical Center)

  • Brian Hardaway

    (Columbia University Irving Medical Center)

  • Sandra Abramowicz

    (Columbia University Irving Medical Center)

  • Tong Xiao

    (Columbia University Irving Medical Center)

  • Wenli Liu

    (Columbia University Irving Medical Center)

  • David G. Thomas

    (Columbia University Irving Medical Center)

  • Mohammad Ali Hajebrahimi

    (Ludwig Maximilian University
    Partner Site Munich Heart Alliance)

  • Joachim Pircher

    (Ludwig Maximilian University
    Partner Site Munich Heart Alliance)

  • Carlos Silvestre-Roig

    (Partner Site Munich Heart Alliance
    Institute for Cardiovascular Prevention (IPEK), LMU Munich)

  • Andriana G. Kotini

    (Icahn School of Medicine at Mount Sinai
    Tisch Cancer Institute, Icahn School of Medicine at Mount Sinai
    Icahn School of Medicine at Mount Sinai
    Icahn School of Medicine at Mount Sinai)

  • Larry L. Luchsinger

    (Columbia University Irving Medical Center)

  • Ying Wei

    (Columbia University)

  • Marit Westerterp

    (Columbia University Irving Medical Center
    University of Groningen, University Medical Center Groningen)

  • Hans-Willem Snoeck

    (Columbia University Irving Medical Center)

  • Eirini P. Papapetrou

    (Icahn School of Medicine at Mount Sinai
    Tisch Cancer Institute, Icahn School of Medicine at Mount Sinai
    Icahn School of Medicine at Mount Sinai
    Icahn School of Medicine at Mount Sinai)

  • Christian Schulz

    (Ludwig Maximilian University
    Partner Site Munich Heart Alliance)

  • Steffen Massberg

    (Ludwig Maximilian University
    Partner Site Munich Heart Alliance)

  • Oliver Soehnlein

    (Partner Site Munich Heart Alliance
    Institute for Cardiovascular Prevention (IPEK), LMU Munich
    Karolinska Institute)

  • Benjamin Ebert

    (Dana-Faber Cancer Institute
    Dana-Faber Cancer Institute)

  • Ross L. Levine

    (Memorial Sloan Kettering Cancer Center
    Memorial Sloan Kettering Cancer Center)

  • Muredach P. Reilly

    (Columbia University Irving Medical Center
    Columbia University Irving Medical Center)

  • Peter Libby

    (Cardiovascular Division, Brigham and Women’s Hospital, Harvard Medical School)

  • Nan Wang

    (Columbia University Irving Medical Center)

  • Alan R. Tall

    (Columbia University Irving Medical Center)

Abstract

Clonal haematopoiesis, which is highly prevalent in older individuals, arises from somatic mutations that endow a proliferative advantage to haematopoietic cells. Clonal haematopoiesis increases the risk of myocardial infarction and stroke independently of traditional risk factors1. Among the common genetic variants that give rise to clonal haematopoiesis, the JAK2V617F (JAK2VF) mutation, which increases JAK–STAT signalling, occurs at a younger age and imparts the strongest risk of premature coronary heart disease1,2. Here we show increased proliferation of macrophages and prominent formation of necrotic cores in atherosclerotic lesions in mice that express Jak2VF selectively in macrophages, and in chimeric mice that model clonal haematopoiesis. Deletion of the essential inflammasome components caspase 1 and 11, or of the pyroptosis executioner gasdermin D, reversed these adverse changes. Jak2VF lesions showed increased expression of AIM2, oxidative DNA damage and DNA replication stress, and Aim2 deficiency reduced atherosclerosis. Single-cell RNA sequencing analysis of Jak2VF lesions revealed a landscape that was enriched for inflammatory myeloid cells, which were suppressed by deletion of Gsdmd. Inhibition of the inflammasome product interleukin-1β reduced macrophage proliferation and necrotic formation while increasing the thickness of fibrous caps, indicating that it stabilized plaques. Our findings suggest that increased proliferation and glycolytic metabolism in Jak2VF macrophages lead to DNA replication stress and activation of the AIM2 inflammasome, thereby aggravating atherosclerosis. Precise application of therapies that target interleukin-1β or specific inflammasomes according to clonal haematopoiesis status could substantially reduce cardiovascular risk.

Suggested Citation

  • Trevor P. Fidler & Chenyi Xue & Mustafa Yalcinkaya & Brian Hardaway & Sandra Abramowicz & Tong Xiao & Wenli Liu & David G. Thomas & Mohammad Ali Hajebrahimi & Joachim Pircher & Carlos Silvestre-Roig &, 2021. "The AIM2 inflammasome exacerbates atherosclerosis in clonal haematopoiesis," Nature, Nature, vol. 592(7853), pages 296-301, April.
  • Handle: RePEc:nat:nature:v:592:y:2021:i:7853:d:10.1038_s41586-021-03341-5
    DOI: 10.1038/s41586-021-03341-5
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