Theranostics 2023; 13(8):2605-2615. doi:10.7150/thno.81760 This issue Cite

Review

Roles of glycosylation at the cancer cell surface: opportunities for large scale glycoproteomics

Tomislav Čaval, Frederico Alisson-Silva, Flavio Schwarz

InterVenn Biosciences, South San Francisco, California.

Citation:
Čaval T, Alisson-Silva F, Schwarz F. Roles of glycosylation at the cancer cell surface: opportunities for large scale glycoproteomics. Theranostics 2023; 13(8):2605-2615. doi:10.7150/thno.81760. https://www.thno.org/v13p2605.htm
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Abstract

Graphic abstract

Cell surface glycosylation has a variety of functions, and its dysregulation in cancer contributes to impaired signaling, metastasis and the evasion of the immune responses. Recently, a number of glycosyltransferases that lead to altered glycosylation have been linked to reduced anti-tumor immune responses: B3GNT3, which is implicated in PD-L1 glycosylation in triple negative breast cancer, FUT8, through fucosylation of B7H3, and B3GNT2, which confers cancer resistance to T cell cytotoxicity. Given the increased appreciation of the relevance of protein glycosylation, there is a critical need for the development of methods that allow for an unbiased interrogation of cell surface glycosylation status. Here we provide an overview of the broad changes in glycosylation at the surface of cancer cell and describe selected examples of receptors with aberrant glycosylation leading to functional changes, with emphasis on immune checkpoint inhibitors, growth-promoting and growth-arresting receptors. Finally, we posit that the field of glycoproteomics has matured to an extent where large-scale profiling of intact glycopeptides from the cell surface is feasible and is poised for discovery of new actionable targets against cancer.

Keywords: Cancer, Mass Spectrometry, Glycosylation, Glycoproteomics, Immune checkpoints


Citation styles

APA
Čaval, T., Alisson-Silva, F., Schwarz, F. (2023). Roles of glycosylation at the cancer cell surface: opportunities for large scale glycoproteomics. Theranostics, 13(8), 2605-2615. https://doi.org/10.7150/thno.81760.

ACS
Čaval, T.; Alisson-Silva, F.; Schwarz, F. Roles of glycosylation at the cancer cell surface: opportunities for large scale glycoproteomics. Theranostics 2023, 13 (8), 2605-2615. DOI: 10.7150/thno.81760.

NLM
Čaval T, Alisson-Silva F, Schwarz F. Roles of glycosylation at the cancer cell surface: opportunities for large scale glycoproteomics. Theranostics 2023; 13(8):2605-2615. doi:10.7150/thno.81760. https://www.thno.org/v13p2605.htm

CSE
Čaval T, Alisson-Silva F, Schwarz F. 2023. Roles of glycosylation at the cancer cell surface: opportunities for large scale glycoproteomics. Theranostics. 13(8):2605-2615.

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