Clustering of major histocompatibility complex-class I molecules in healthy and cancer colon cells revealed from their nanomechanical properties Journal Article


Authors: Moretti, M.; La Rocca, R.; Perrone Donnorso, M.; Torre, B.; Canale, C.; Malerba, M.; Das, G.; Sottile, R.; Garofalo, C.; Achour, A.; Kärre, K.; Carbone, E.; Di Fabrizio, E.
Article Title: Clustering of major histocompatibility complex-class I molecules in healthy and cancer colon cells revealed from their nanomechanical properties
Abstract: The activation of the T cell mediated immune response relies on the fine interaction between the T cell receptor on the immune cell and the antigen-presenting major histocompatibility complex (MHC) molecules on the membrane surface of antigen-presenting cells. Both the distribution and quantity of MHC/peptide complexes and their adequate morphological presentation affect the activation of the immune cells. In several types of cancer the immune response is down-regulated due to the low expression of MHC-class I (MHC-I) molecules on the cell's surface, and in addition, the mechanical properties of the membrane seem to play a role. Herein, we investigate the distribution of MHC-I molecules and the related nanoscale mechanical environment on the cell surface of two cell lines derived from colon adenocarcinoma and a healthy epithelial colon reference cell line. Atomic force microscopy (AFM) force spectroscopy analysis using an antibody-tagged pyramidal probe specific for MHC-I molecules and a formula that relates the elasticity of the cell to the energy of adhesion revealed the different population distributions of MHC-I molecules in healthy cells compared to cancer cells. We found that MHC-I molecules are significantly less expressed in cancer cells. Moreover, the local elastic modulus is significantly reduced in cancer cells. We speculate that these results might be related to the proven ability of cancer cells to evade the immune system, not only by reducing MHC-I cell surface expression but also by modifying the local mechanical properties affecting the overall morphology of MHC-I synapse presentation to immune cells. ©
Keywords: neoplasm; neoplasms; immune system; cluster analysis; morphology; antigens; cell culture; hla antigen class 2; hla antigen class 1; histocompatibility antigens class i; cell membranes; histocompatibility antigens class ii; major histocompatibility complex; colon; antigen presenting cell; antigen-presenting cells; diseases; cancer cells; chemical activation; t-cells; molecules; atomic force microscopy; mechanical properties; antigen presenting cells; biomechanics; major histocompatibility complex class; single molecule force spectroscopy; afm; mhc-i clustering; nanomechanical properties; cell surface expression; cell-mediated immune; local mechanical properties; mechanical environment; nanomechanical property
Journal Title: ACS Nano
Volume: 15
Issue: 4
ISSN: 1936-0851
Publisher: American Chemical Society  
Date Published: 2021-04-27
Start Page: 7500
End Page: 7512
Language: English
DOI: 10.1021/acsnano.1c00897
PUBMED: 33749234
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 1 July 2021 -- Source: Scopus
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