4.8 Article

Consequences of telomere dysfunction in fibroblasts, club and basal cells for lung fibrosis development

Journal

NATURE COMMUNICATIONS
Volume 13, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41467-022-32771-6

Keywords

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Funding

  1. AstraZeneca
  2. Fundacion Botin (Spain)
  3. Banco Santander (Spain)
  4. Agencia Estatal de Investigacion (AEI/MCI) [RETOS SAF2017-82623-R]
  5. European Regional Development Fund (ERDF), A way of making Europe
  6. Comunidad de Madrid
  7. European Research Council (ERC) under the European Union [882385]
  8. Spanish Government through the Instituto de Salud Carlos III (ISCIII)
  9. European Research Council (ERC) [882385] Funding Source: European Research Council (ERC)

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Depletion of TRF1 does not lead to interstitial lung fibrosis, highlighting the relevance of alveolar type II cells in this disease.
Telomere dysfunction induced by TRF1 depletion in fibroblasts, club and basal cells did not lead to interstitial lung fibrosis, underscoring alveolar type II cells as the relevant cell type in pulmonary fibrosis. TRF1 is an essential component of the telomeric protective complex or shelterin. We previously showed that dysfunctional telomeres in alveolar type II (ATII) cells lead to interstitial lung fibrosis. Here, we study the lung pathologies upon telomere dysfunction in fibroblasts, club and basal cells. TRF1 deficiency in lung fibroblasts, club and basal cells induced telomeric damage, proliferative defects, cell cycle arrest and apoptosis. While Trf1 deletion in fibroblasts does not spontaneously lead to lung pathologies, upon bleomycin challenge exacerbates lung fibrosis. Unlike in females, Trf1 deletion in club and basal cells from male mice resulted in lung inflammation and airway remodeling. Here, we show that depletion of TRF1 in fibroblasts, Club and basal cells does not lead to interstitial lung fibrosis, underscoring ATII cells as the relevant cell type for the origin of interstitial fibrosis. Our findings contribute to a better understanding of proper telomere protection in lung tissue homeostasis.

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