Glioblastoma (GBM) is a highly aggressive brain tumor marked by invasive growth and therapy resistance. Tumor cells adapt to hostile conditions, such as hypoxia and nutrient deprivation, by activating survival mechanisms including autophagy and metabolic reprogramming. Among GBM-associated changes, hypersialylation, particularly, the aberrant expression of polysialic acid (PSA), has been linked to increased plasticity, motility, and immune evasion. PSA, a long α2,8-linked sialic acid polymer typically attached to the NCAM, is abundant in the embryonic brain and re-expressed in cancers, correlating with poor prognosis. Here, we investigated how PSA expression was regulated in GBM cells under nutrient-limiting conditions. Serum starvation induced a marked increase in PSA-NCAM, driven by upregulation of the polysialyltransferase ST8SiaIV and an autophagy-dependent recycling of sialic acids from degraded glycoproteins. Inhibition of autophagy or sialidases impaired PSA induction, and PSA regulation appeared dependent on p53 function. Immunohistochemical analysis of GBM tissues revealed co-localization of PSA and LC3, particularly around necrotic regions. In conclusion, we identified a novel mechanism by which GBM cells sustain PSA-NCAM expression via autophagy-mediated sialic acid recycling under nutrient stress. This pathway may enhance cell migration, immune escape, and stem-like properties, offering a potential therapeutic target in GBM.

Polysialylation of Glioblastoma Cells Is Regulated by Autophagy Under Nutrient Deprivation / Scibetta, Sofia; Pepe, Giuseppe; Iuliano, Marco; Iaiza, Alessia; Palazzo, Elisabetta; Quadri, Marika; Boltje, Thomas J; Fazi, Francesco; Petrozza, Vincenzo; Di Bartolomeo, Sabrina; Di Pardo, Alba; Calogero, Antonella; Mangino, Giorgio; Maglione, Vittorio; Rosa, Paolo. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 26:15(2025), pp. 1-19. [10.3390/ijms26157625]

Polysialylation of Glioblastoma Cells Is Regulated by Autophagy Under Nutrient Deprivation

Iuliano, Marco;Fazi, Francesco;Petrozza, Vincenzo;Calogero, Antonella;Mangino, Giorgio;Rosa, Paolo
2025

Abstract

Glioblastoma (GBM) is a highly aggressive brain tumor marked by invasive growth and therapy resistance. Tumor cells adapt to hostile conditions, such as hypoxia and nutrient deprivation, by activating survival mechanisms including autophagy and metabolic reprogramming. Among GBM-associated changes, hypersialylation, particularly, the aberrant expression of polysialic acid (PSA), has been linked to increased plasticity, motility, and immune evasion. PSA, a long α2,8-linked sialic acid polymer typically attached to the NCAM, is abundant in the embryonic brain and re-expressed in cancers, correlating with poor prognosis. Here, we investigated how PSA expression was regulated in GBM cells under nutrient-limiting conditions. Serum starvation induced a marked increase in PSA-NCAM, driven by upregulation of the polysialyltransferase ST8SiaIV and an autophagy-dependent recycling of sialic acids from degraded glycoproteins. Inhibition of autophagy or sialidases impaired PSA induction, and PSA regulation appeared dependent on p53 function. Immunohistochemical analysis of GBM tissues revealed co-localization of PSA and LC3, particularly around necrotic regions. In conclusion, we identified a novel mechanism by which GBM cells sustain PSA-NCAM expression via autophagy-mediated sialic acid recycling under nutrient stress. This pathway may enhance cell migration, immune escape, and stem-like properties, offering a potential therapeutic target in GBM.
2025
autophagy; glioblastoma; nutrient deprivation; polysialic acid; tumor microenvironment
01 Pubblicazione su rivista::01a Articolo in rivista
Polysialylation of Glioblastoma Cells Is Regulated by Autophagy Under Nutrient Deprivation / Scibetta, Sofia; Pepe, Giuseppe; Iuliano, Marco; Iaiza, Alessia; Palazzo, Elisabetta; Quadri, Marika; Boltje, Thomas J; Fazi, Francesco; Petrozza, Vincenzo; Di Bartolomeo, Sabrina; Di Pardo, Alba; Calogero, Antonella; Mangino, Giorgio; Maglione, Vittorio; Rosa, Paolo. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 26:15(2025), pp. 1-19. [10.3390/ijms26157625]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1744836
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