Cargando…

Data-independent acquisition and quantification of extracellular matrix from human lung in chronic inflammation-associated carcinomas

Early events associated with chronic inflammation and cancer involve significant remodeling of the extracellular matrix (ECM), which greatly affects its composition and functional properties. Using lung squamous cell carcinoma (LSCC), a chronic inflammation-associated cancer (CIAC), we optimized a r...

Descripción completa

Detalles Bibliográficos
Autores principales: Bons, Joanna, Pan, Deng, Shah, Samah, Bai, Rosemary, Chen-Tanyolac, Chira, Wang, Xianhong, Elliott, Daffolyn R. Fels, Urisman, Anatoly, O’Broin, Amy, Basisty, Nathan, Rose, Jacob, Sangwan, Veena, Camilleri-Broët, Sophie, Tankel, James, Gascard, Philippe, Ferri, Lorenzo, Tlsty, Thea D., Schilling, Birgit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10391693/
https://www.ncbi.nlm.nih.gov/pubmed/36228107
http://dx.doi.org/10.1002/pmic.202200021
_version_ 1785082774499098624
author Bons, Joanna
Pan, Deng
Shah, Samah
Bai, Rosemary
Chen-Tanyolac, Chira
Wang, Xianhong
Elliott, Daffolyn R. Fels
Urisman, Anatoly
O’Broin, Amy
Basisty, Nathan
Rose, Jacob
Sangwan, Veena
Camilleri-Broët, Sophie
Tankel, James
Gascard, Philippe
Ferri, Lorenzo
Tlsty, Thea D.
Schilling, Birgit
author_facet Bons, Joanna
Pan, Deng
Shah, Samah
Bai, Rosemary
Chen-Tanyolac, Chira
Wang, Xianhong
Elliott, Daffolyn R. Fels
Urisman, Anatoly
O’Broin, Amy
Basisty, Nathan
Rose, Jacob
Sangwan, Veena
Camilleri-Broët, Sophie
Tankel, James
Gascard, Philippe
Ferri, Lorenzo
Tlsty, Thea D.
Schilling, Birgit
author_sort Bons, Joanna
collection PubMed
description Early events associated with chronic inflammation and cancer involve significant remodeling of the extracellular matrix (ECM), which greatly affects its composition and functional properties. Using lung squamous cell carcinoma (LSCC), a chronic inflammation-associated cancer (CIAC), we optimized a robust proteomic pipeline to discover potential biomarker signatures and protein changes specifically in the stroma. We combined ECM enrichment from fresh human tissues, data-independent acquisition (DIA) strategies, and stringent statistical processing to analyze “Tumor” and matched adjacent histologically normal (“Matched Normal”) tissues from patients with LSCC. Overall, 1802 protein groups were quantified with at least two unique peptides, and 56% of those proteins were annotated as “extracellular.” Confirming dramatic ECM remodeling during CIAC progression, 529 proteins were significantly altered in the “Tumor” compared to “Matched Normal” tissues. The signature was typified by a coordinated loss of basement membrane proteins and small leucine-rich proteins. The dramatic increase in the stromal levels of SERPINH1/heat shock protein 47, that was discovered using our ECM proteomic pipeline, was validated by immunohistochemistry (IHC) of “Tumor” and “Matched Normal” tissues, obtained from an independent cohort of LSCC patients. This integrated workflow provided novel insights into ECM remodeling during CIAC progression, and identified potential biomarker signatures and future therapeutic targets.
format Online
Article
Text
id pubmed-10391693
institution National Center for Biotechnology Information
language English
publishDate 2023
record_format MEDLINE/PubMed
spelling pubmed-103916932023-08-01 Data-independent acquisition and quantification of extracellular matrix from human lung in chronic inflammation-associated carcinomas Bons, Joanna Pan, Deng Shah, Samah Bai, Rosemary Chen-Tanyolac, Chira Wang, Xianhong Elliott, Daffolyn R. Fels Urisman, Anatoly O’Broin, Amy Basisty, Nathan Rose, Jacob Sangwan, Veena Camilleri-Broët, Sophie Tankel, James Gascard, Philippe Ferri, Lorenzo Tlsty, Thea D. Schilling, Birgit Proteomics Article Early events associated with chronic inflammation and cancer involve significant remodeling of the extracellular matrix (ECM), which greatly affects its composition and functional properties. Using lung squamous cell carcinoma (LSCC), a chronic inflammation-associated cancer (CIAC), we optimized a robust proteomic pipeline to discover potential biomarker signatures and protein changes specifically in the stroma. We combined ECM enrichment from fresh human tissues, data-independent acquisition (DIA) strategies, and stringent statistical processing to analyze “Tumor” and matched adjacent histologically normal (“Matched Normal”) tissues from patients with LSCC. Overall, 1802 protein groups were quantified with at least two unique peptides, and 56% of those proteins were annotated as “extracellular.” Confirming dramatic ECM remodeling during CIAC progression, 529 proteins were significantly altered in the “Tumor” compared to “Matched Normal” tissues. The signature was typified by a coordinated loss of basement membrane proteins and small leucine-rich proteins. The dramatic increase in the stromal levels of SERPINH1/heat shock protein 47, that was discovered using our ECM proteomic pipeline, was validated by immunohistochemistry (IHC) of “Tumor” and “Matched Normal” tissues, obtained from an independent cohort of LSCC patients. This integrated workflow provided novel insights into ECM remodeling during CIAC progression, and identified potential biomarker signatures and future therapeutic targets. 2023-04 2022-10-13 /pmc/articles/PMC10391693/ /pubmed/36228107 http://dx.doi.org/10.1002/pmic.202200021 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the CreativeCommonsAttribution (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Bons, Joanna
Pan, Deng
Shah, Samah
Bai, Rosemary
Chen-Tanyolac, Chira
Wang, Xianhong
Elliott, Daffolyn R. Fels
Urisman, Anatoly
O’Broin, Amy
Basisty, Nathan
Rose, Jacob
Sangwan, Veena
Camilleri-Broët, Sophie
Tankel, James
Gascard, Philippe
Ferri, Lorenzo
Tlsty, Thea D.
Schilling, Birgit
Data-independent acquisition and quantification of extracellular matrix from human lung in chronic inflammation-associated carcinomas
title Data-independent acquisition and quantification of extracellular matrix from human lung in chronic inflammation-associated carcinomas
title_full Data-independent acquisition and quantification of extracellular matrix from human lung in chronic inflammation-associated carcinomas
title_fullStr Data-independent acquisition and quantification of extracellular matrix from human lung in chronic inflammation-associated carcinomas
title_full_unstemmed Data-independent acquisition and quantification of extracellular matrix from human lung in chronic inflammation-associated carcinomas
title_short Data-independent acquisition and quantification of extracellular matrix from human lung in chronic inflammation-associated carcinomas
title_sort data-independent acquisition and quantification of extracellular matrix from human lung in chronic inflammation-associated carcinomas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10391693/
https://www.ncbi.nlm.nih.gov/pubmed/36228107
http://dx.doi.org/10.1002/pmic.202200021
work_keys_str_mv AT bonsjoanna dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT pandeng dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT shahsamah dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT bairosemary dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT chentanyolacchira dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT wangxianhong dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT elliottdaffolynrfels dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT urismananatoly dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT obroinamy dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT basistynathan dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT rosejacob dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT sangwanveena dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT camilleribroetsophie dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT tankeljames dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT gascardphilippe dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT ferrilorenzo dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT tlstythead dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas
AT schillingbirgit dataindependentacquisitionandquantificationofextracellularmatrixfromhumanlunginchronicinflammationassociatedcarcinomas