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Single-cell division tracing and transcriptomics reveal cell types and differentiation paths in the regenerating lung

Author

Listed:
  • Leila R. Martins

    (German Cancer Research Center (DKFZ)
    a partnership between DKFZ and Heidelberg University Hospital)

  • Lina Sieverling

    (a partnership between DKFZ and Heidelberg University Hospital
    DKFZ)

  • Michelle Michelhans

    (German Cancer Research Center (DKFZ)
    a partnership between DKFZ and Heidelberg University Hospital
    DKFZ
    Heidelberg University)

  • Chiara Schiller

    (German Cancer Research Center (DKFZ)
    a partnership between DKFZ and Heidelberg University Hospital
    Heidelberg University Hospital and Heidelberg University)

  • Cihan Erkut

    (German Cancer Research Center (DKFZ)
    a partnership between DKFZ and Heidelberg University Hospital)

  • Thomas G. P. Grünewald

    (a partnership between DKFZ and Heidelberg University Hospital
    Hopp-Children’s Cancer Center (KiTZ)
    DKFZ
    Heidelberg University Hospital)

  • Sergio Triana

    (European Molecular Biology Laboratory (EMBL)
    Broad Institute of Harvard and MIT
    Institute for Medical Engineering and Sciences (IMES), and Koch Institute for Integrative Cancer Research, MIT)

  • Stefan Fröhling

    (a partnership between DKFZ and Heidelberg University Hospital
    DKFZ
    German Cancer Consortium (DKTK)
    Heidelberg University)

  • Lars Velten

    (The Barcelona Institute of Science and Technology
    Universitat Pompeu Fabra (UPF))

  • Hanno Glimm

    (Faculty of Medicine and University Hospital Carl Gustav Carus, TUD Dresden University of Technology, and Helmholtz-Zentrum Dresden - Rossendorf (HZDR)
    Faculty of Medicine and University Hospital Carl Gustav Carus, Technische Universität Dresden
    DKFZ
    partner site Dresden)

  • Claudia Scholl

    (German Cancer Research Center (DKFZ)
    a partnership between DKFZ and Heidelberg University Hospital)

Abstract

Understanding the molecular and cellular processes involved in lung epithelial regeneration may fuel the development of therapeutic approaches for lung diseases. We combine mouse models allowing diphtheria toxin-mediated damage of specific epithelial cell types and parallel GFP-labeling of functionally dividing cells with single-cell transcriptomics to characterize the regeneration of the distal lung. We uncover cell types, including Krt13+ basal and Krt15+ club cells, detect an intermediate cell state between basal and goblet cells, reveal goblet cells as actively dividing progenitor cells, and provide evidence that adventitial fibroblasts act as supporting cells in epithelial regeneration. We also show that diphtheria toxin-expressing cells can persist in the lung, express specific inflammatory factors, and transcriptionally resemble a previously undescribed population in the lungs of COVID-19 patients. Our study provides a comprehensive single-cell atlas of the distal lung that characterizes early transcriptional and cellular responses to concise epithelial injury, encompassing proliferation, differentiation, and cell-to-cell interactions.

Suggested Citation

  • Leila R. Martins & Lina Sieverling & Michelle Michelhans & Chiara Schiller & Cihan Erkut & Thomas G. P. Grünewald & Sergio Triana & Stefan Fröhling & Lars Velten & Hanno Glimm & Claudia Scholl, 2024. "Single-cell division tracing and transcriptomics reveal cell types and differentiation paths in the regenerating lung," Nature Communications, Nature, vol. 15(1), pages 1-20, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-46469-4
    DOI: 10.1038/s41467-024-46469-4
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