Back to Search Start Over

Spatial proteomic analysis of isogenic metastatic colorectal cancer cells reveals key dysregulated proteins associated with lymph node, liver, and lung metastasis

Authors :
Instituto de Salud Carlos III
European Commission
Research Foundation - Flanders
Flemish Government
KU Leuven
Ministerio de Educación, Cultura y Deporte (España)
Solís-Fernández, Guillermo [0000-0002-4785-0040]
Montero-Calle, Ana [0000-0001-5141-0454]
Martínez-Useros, Javier [0000-0001-9007-828X]
López-Janeiro, Álvaro [0000-0002-5744-3115]
Ríos, Vivian de los [0000-0001-5582-6879]
Dziaková, Jana [0000-0001-5317-5275]
Molina-Roldán, Elena Milagrosa [0000-0002-8882-8405]
Fernandez-Aceñero, M. Jesús [0000-0002-2439-3553]
Peláez-García, Alberto [0000-0002-5401-3216]
Casal, J. Ignacio [0000-0003-1085-2840]
Hofkens, Johan [0000-0002-9101-0567]
Rocha, Susana [0000-0003-1258-9396]
Barderas, Rodrigo [0000-0003-3539-7469]
Solís-Fernández, Guillermo
Montero-Calle, Ana
Martínez-Useros, Javier
López-Janeiro, Álvaro
Ríos, Vivian de los
Sanz, Rodrigo
Dziaková, Jana
Molina-Roldán, Elena Milagrosa
Fernandez-Aceñero, M. Jesús
Peláez-García, Alberto
Casal, J. Ignacio
Hofkens, Johan
Rocha, Susana
Barderas, Rodrigo
Instituto de Salud Carlos III
European Commission
Research Foundation - Flanders
Flemish Government
KU Leuven
Ministerio de Educación, Cultura y Deporte (España)
Solís-Fernández, Guillermo [0000-0002-4785-0040]
Montero-Calle, Ana [0000-0001-5141-0454]
Martínez-Useros, Javier [0000-0001-9007-828X]
López-Janeiro, Álvaro [0000-0002-5744-3115]
Ríos, Vivian de los [0000-0001-5582-6879]
Dziaková, Jana [0000-0001-5317-5275]
Molina-Roldán, Elena Milagrosa [0000-0002-8882-8405]
Fernandez-Aceñero, M. Jesús [0000-0002-2439-3553]
Peláez-García, Alberto [0000-0002-5401-3216]
Casal, J. Ignacio [0000-0003-1085-2840]
Hofkens, Johan [0000-0002-9101-0567]
Rocha, Susana [0000-0003-1258-9396]
Barderas, Rodrigo [0000-0003-3539-7469]
Solís-Fernández, Guillermo
Montero-Calle, Ana
Martínez-Useros, Javier
López-Janeiro, Álvaro
Ríos, Vivian de los
Sanz, Rodrigo
Dziaková, Jana
Molina-Roldán, Elena Milagrosa
Fernandez-Aceñero, M. Jesús
Peláez-García, Alberto
Casal, J. Ignacio
Hofkens, Johan
Rocha, Susana
Barderas, Rodrigo
Publication Year :
2022

Abstract

Metastasis is the primary cause of colorectal cancer (CRC) death. The liver and lung, besides adjacent lymph nodes, are the most common sites of metastasis. Here, we aimed to study the lymph nodes, liver, and lung CRC metastasis by quantitative spatial proteomics analysis using CRC cell-based models that recapitulate these metastases. The isogenic KM12 cell system composed of the non-metastatic KM12C cells, liver metastatic KM12SM cells, and liver and lung metastatic KM12L4a cells, and the isogenic non-metastatic SW480 and lymph nodes metastatic SW620 cells, were used. Cells were fractionated to study by proteomics five subcellular fractions corresponding to cytoplasm, membrane, nucleus, chromatin-bound proteins, and cytoskeletal proteins, and the secretome. Trypsin digested extracts were labeled with TMT 11-plex and fractionated prior to proteomics analysis on a Q Exactive. We provide data on protein abundance and localization of 4710 proteins in their different subcellular fractions, depicting dysregulation of proteins in abundance and/or localization in the most common sites of CRC metastasis. After bioinformatics, alterations in abundance and localization for selected proteins from diverse subcellular localizations were validated via WB, IF, IHC, and ELISA using CRC cells, patient tissues, and plasma samples. Results supported the relevance of the proteomics results in an actual CRC scenario. It was particularly relevant that the measurement of GLG1 in plasma showed diagnostic ability of advanced stages of the disease, and that the mislocalization of MUC5AC and BAIAP2 in the nucleus and membrane, respectively, was significantly associated with poor prognosis of CRC patients. Our results demonstrate that the analysis of cell extracts dilutes protein alterations in abundance in specific localizations that might only be observed studying specific subcellular fractions, as here observed for BAIAP2, GLG1, PHYHIPL, TNFRSF10A, or CDKN2AIP, which are interesting protein

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1373160355
Document Type :
Electronic Resource