蛋白质组学
蛋白质组
生物
计算生物学
细胞生物学
肺
生物信息学
医学
生物化学
基因
内科学
作者
Eva Griesser,Martin Gesell,Daniel Veyel,Thorsten Lamla,Kerstin Geillinger‐Kästle,Wolfgang Rist
出处
期刊:Proteomics
[Wiley]
日期:2023-01-15
卷期号:23 (10): e2100414-e2100414
被引量:3
标识
DOI:10.1002/pmic.202100414
摘要
Abstract Epithelial injury is one of the major drivers of acute pulmonary diseases. Recurring injury followed by aberrant repair is considered as the primary cause of chronic lung diseases, such as idiopathic pulmonary fibrosis (IPF). Preclinical in vivo models allow studying early disease‐driving mechanisms like the recently established adeno‐associated virus‐diphtheria toxin receptor (AAV‐DTR) mouse model of acute epithelial lung injury, which utilises AAV mediated expression of the human DTR. We performed quantitative proteomics of homogenised lung samples from this model and compared the results to spatially resolved proteomics data of epithelial cell regions from the same animals. In whole lung tissue proteins involved in cGAS‐STING and interferon pathways, proliferation, DNA replication and the composition of the provisional extracellular matrix were upregulated upon injury. Besides epithelial cell markers SP‐A, SP‐C and Scgb1a1, proteins involved in cilium assembly, lipid metabolism and redox pathways were among downregulated proteins. Comparison of the bulk to spatially resolved proteomics data revealed a large overlap of protein changes and striking differences. Together our study underpins the broad usability of bulk proteomics and pinpoints to the benefit of sophisticated proteomic analyses of specific tissue regions or single cell types.
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