An atlas of the aging lung mapped by single cell transcriptomics and deep tissue proteomics

Ilias Angelidis(Helmholtz Zentrum München), Lukas M. Simon(Helmholtz Zentrum München), Isis E. Fernandez(Helmholtz Zentrum München), Maximilian Strunz(Helmholtz Zentrum München), Christoph H. Mayr(Helmholtz Zentrum München), Flavia R. Greiffo(Helmholtz Zentrum München), George Tsitsiridis(Helmholtz Zentrum München), Meshal Ansari(Helmholtz Zentrum München), Elisabeth Graf(Helmholtz Zentrum München), Tim-Matthias Strom(Helmholtz Zentrum München), Monica Nagendran(Stanford University), Tushar Desai(Stanford University), Oliver Eickelberg(University of Colorado Anschutz Medical Campus), Matthias Mann(Max Planck Institute of Biochemistry), Fabian J. Theis(Helmholtz Zentrum München), Herbert B. Schiller(Helmholtz Zentrum München)
Nature Communications
February 27, 2019
Cited by 667Open Access
Full Text

Abstract

Aging promotes lung function decline and susceptibility to chronic lung diseases, which are the third leading cause of death worldwide. Here, we use single cell transcriptomics and mass spectrometry-based proteomics to quantify changes in cellular activity states across 30 cell types and chart the lung proteome of young and old mice. We show that aging leads to increased transcriptional noise, indicating deregulated epigenetic control. We observe cell type-specific effects of aging, uncovering increased cholesterol biosynthesis in type-2 pneumocytes and lipofibroblasts and altered relative frequency of airway epithelial cells as hallmarks of lung aging. Proteomic profiling reveals extracellular matrix remodeling in old mice, including increased collagen IV and XVI and decreased Fraser syndrome complex proteins and collagen XIV. Computational integration of the aging proteome with the single cell transcriptomes predicts the cellular source of regulated proteins and creates an unbiased reference map of the aging lung.


Related Papers

No related papers found

Powered by citation graph analysis