4.5 Article

Quantitative proteomic characterization of the lung extracellular matrix in chronic obstructive pulmonary disease and idiopathic pulmonary fibrosis

期刊

JOURNAL OF PROTEOMICS
卷 189, 期 -, 页码 23-33

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jprot.2018.02.027

关键词

Quantitative proteomics; Lung tissue; COPD; IPF; Matrisome; SWATH-MS

资金

  1. Swedish Foundation for Strategic Research [SBE13-0130]
  2. Olle Engkvist Byggmastare
  3. Swedish Heart Lung Foundation [20140293]
  4. Alfred Osterlund Foundation
  5. Royal Physiographical Society in Lund [126069]
  6. Medical Faculty of Lund University [990097]
  7. Swedish Medical Research Council [11550]
  8. Swedish Government Funds for Clinical Research [126018]
  9. Evy and Gunnar Sandberg Foundation [104862]
  10. Konung Gustaf V:s och Drottning Victorias Frimurarstiftelse [104078]
  11. Swedish Foundation for Strategic Research (SSF) [SBE13-0130] Funding Source: Swedish Foundation for Strategic Research (SSF)

向作者/读者索取更多资源

Remodeling of the extracellular matrix (ECM) is a common feature in lung diseases such as chronic obstructive pulmonary disease (COPD) and idiopathic pulmonary fibrosis (IPF). Here, we applied a sequential tissue extraction strategy to describe disease-specific remodeling of human lung tissue in disease, using end-stages of COPD and IPF. Our strategy was based on quantitative comparison of the disease proteomes, with specific focus on the matrisome, using data-independent acquisition and targeted data analysis (SWATH-MS). Our work provides an in-depth proteomic characterization of human lung tissue during impaired tissue remodeling. In addition, we show important quantitative and qualitative effects of the solubility of matrisome proteins. COPD was characterized by a disease-specific increase in ECM regulators, metalloproteinase inhibitor 3 (TIMP3) and matrix metalloproteinase 28 (MMP-28), whereas for IPF, impairment in cell adhesion proteins, such as collagen VI and laminins, was most prominent. For both diseases, we identified increased levels of proteins involved in the regulation of endopeptidase activity, with several proteins belonging to the serpin family. The established human lung quantitative proteome inventory and the construction of a tissue-specific protein assay library provides a resource for future quantitative proteomic analyses of human lung tissues. Significance: We present a sequential tissue extraction strategy to determine changes in extractability of matrisome proteins in end-stage COPD. and IPF compared to healthy control tissue. Extensive quantitative analysis of the proteome changes of the disease states revealed altered solubility of matrisome proteins involved in ECM regulators and cell-ECM communication. The results highlight disease-specific remodeling mechanisms associated with COPD and IPF.

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