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Molecular mapping of interstitial lung disease reveals a phenotypically distinct senescent basal epithelial cell population
Daryle J. DePianto, Jason A. Vander Heiden, Katrina B. Morshead, Kai-Hui Sun, Zora Modrusan, Grace Teng, Paul J. Wolters, Joseph R. Arron
Daryle J. DePianto, Jason A. Vander Heiden, Katrina B. Morshead, Kai-Hui Sun, Zora Modrusan, Grace Teng, Paul J. Wolters, Joseph R. Arron
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Research Article Aging Pulmonology

Molecular mapping of interstitial lung disease reveals a phenotypically distinct senescent basal epithelial cell population

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Abstract

Compromised regenerative capacity of lung epithelial cells can lead to cellular senescence, which may precipitate fibrosis. While increased markers of senescence have been reported in idiopathic pulmonary fibrosis (IPF), the origin and identity of these senescent cells remain unclear, and tools to characterize context-specific cellular senescence in human lung are lacking. We observed that the senescent marker p16 is predominantly localized to bronchiolized epithelial structures in scarred regions of IPF and systemic sclerosis–associated interstitial lung disease (SSc-ILD) lung tissue, overlapping with the basal epithelial markers Keratin 5 and Keratin 17. Using in vitro models, we derived transcriptional signatures of senescence programming specific to different types of lung epithelial cells and interrogated these signatures in a single-cell RNA-Seq data set derived from control, IPF, and SSc-ILD lung tissue. We identified a population of basal epithelial cells defined by, and enriched for, markers of cellular senescence and identified candidate markers specific to senescent basal epithelial cells in ILD that can enable future functional studies. Notably, gene expression of these cells significantly overlaps with terminally differentiating cells in stratified epithelia, where it is driven by p53 activation as part of the senescence program.

Authors

Daryle J. DePianto, Jason A. Vander Heiden, Katrina B. Morshead, Kai-Hui Sun, Zora Modrusan, Grace Teng, Paul J. Wolters, Joseph R. Arron

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Figure 7

Basal cell senescence is transcriptionally related to squamous terminal differentiation.

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Basal cell senescence is transcriptionally related to squamous terminal ...
(A) Top correlates with LY6D gene expression in lung tissue from control and IPF patient explants. (B) Top correlates with LY6D across various tissues. (C) Phase images of normal human epidermal keratinocyte (NHEK) cultures under basal, differentiation-inducing, and senescence-inducing culture conditions (on left) and IF staining for Ki-67 in NHEK cultures in proliferating, differentiated, and senescent cultures (on right). (D) Comparison of differential gene expression between terminally differentiated keratinocytes and senescent keratinocytes compared with undifferentiated cultures (mean ± SD, n = 3). *P < 0.05 (ratio of means t test). (E) GSEA Hallmark pathway enrichment in the Basal-2 population based on differential gene expression with associated FDR q values and overlap enrichment k:K (# of overlapping genes: # of genes in pathway signature). (F) Gene expression of squamous and SASP markers in gene-edited NHBE cultures at 24 hours (mean ± SD, n = 3). ***P < 0.005 (unpaired 2-tailed Student’s t test). Scale bars: 100 μm (phase in C), 40 μm (IF in C).

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