Growth factor-triggered de-sialylation controls glycolipid-lectin-driven endocytosis

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dc.contributor.author MacDonald, Ewan
dc.contributor.author Forrester, Alison
dc.contributor.author Valades-Cruz, Cesar A.
dc.contributor.author Madsen, Thomas D.
dc.contributor.author Hetmanski, Joseph H. R.
dc.contributor.author Dransart, Estelle
dc.contributor.author Ng, Yeap
dc.contributor.author Godbole, Rashmi
dc.contributor.author Shp, Ananthan Akhil
dc.contributor.author Leconte, Ludovic
dc.contributor.author Chambon, Valerie
dc.contributor.author Ghosh, Debarpan
dc.contributor.author Pinet, Alexis
dc.contributor.author Bhatia, Dhiraj
dc.contributor.author Lombard, Berangere
dc.contributor.author Loew, Damarys
dc.contributor.author Larsen, Martin R.
dc.contributor.author Leffler, Hakon
dc.contributor.author Lefeber, Dirk J.
dc.contributor.author Clausen, Henrik
dc.contributor.author Blangy, Anne
dc.contributor.author Caswell, Patrick
dc.contributor.author Shafaq-Zadah, Massiullah
dc.contributor.author Mayor, Satyajit
dc.contributor.author Weigert, Roberto
dc.contributor.author Wunder, Christian
dc.contributor.author Johannes, Ludger
dc.coverage.spatial United Kingdom
dc.date.accessioned 2025-03-13T07:34:44Z
dc.date.available 2025-03-13T07:34:44Z
dc.date.issued 2025-02
dc.identifier.citation MacDonald, Ewan; Forrester, Alison; Valades-Cruz, Cesar A.; Madsen, Thomas D.; Hetmanski, Joseph H. R.; Dransart, Estelle; Ng, Yeap; Godbole, Rashmi; Shp, Ananthan Akhil; Leconte, Ludovic; Chambon, Valerie; Ghosh, Debarpan; Pinet, Alexis; Bhatia, Dhiraj; Lombard, Berangere; Loew, Damarys; Larsen, Martin R.; Leffler, Hakon; Lefeber, Dirk J.; Clausen, Henrik; Blangy, Anne; Caswell, Patrick; Shafaq-Zadah, Massiullah; Mayor, Satyajit; Weigert, Roberto; Wunder, Christian and Johannes, Ludger, "Growth factor-triggered de-sialylation controls glycolipid-lectin-driven endocytosis", Nature Cell Biology, DOI: 10.1038/s41556-025-01616-x, Feb. 2025.
dc.identifier.issn 1465-7392
dc.identifier.issn 1476-4679
dc.identifier.uri https://doi.org/10.1038/s41556-025-01616-x
dc.identifier.uri https://repository.iitgn.ac.in/handle/123456789/11101
dc.description.abstract Glycolipid-lectin-driven endocytosis controls the formation of clathrin-independent carriers and the internalization of various cargos such as β1 integrin. Whether this process is regulated in a dynamic manner remained unexplored. Here we demonstrate that, within minutes, the epidermal growth factor triggers the galectin-driven endocytosis of cell-surface glycoproteins, such as integrins, that are key regulators of cell adhesion and migration. The onset of this process—mediated by the Na+/H+ antiporter NHE1 as well as the neuraminidases Neu1 and Neu3—requires the pH-triggered enzymatic removal of sialic acids whose presence otherwise prevents galectin binding. De-sialylated glycoproteins are then retrogradely transported to the Golgi apparatus where their glycan make-up is reset to regulate EGF-dependent invasive-cell migration. Further evidence is provided for a role of neuraminidases and galectin-3 in acidification-dependent bone resorption. Glycosylation at the cell surface thereby emerges as a dynamic and reversible regulatory post-translational modification that controls a highly adaptable trafficking pathway.
dc.description.statementofresponsibility by Ewan MacDonald, Alison Forrester, Cesar A. Valades-Cruz, Thomas D. Madsen, Joseph H. R. Hetmanski, Estelle Dransart, Yeap Ng, Rashmi Godbole, Ananthan Akhil Shp, Ludovic Leconte, Valerie Chambon, Debarpan Ghosh, Alexis Pinet, Dhiraj Bhatia, Berangere Lombard, Damarys Loew, Martin R. Larsen, Hakon Leffler, Dirk J. Lefeber, Henrik Clausen, Anne Blangy, Patrick Caswell, Massiullah Shafaq-Zadah, Satyajit Mayor, Roberto Weigert, Christian Wunder and Ludger Johannes
dc.language.iso en_US
dc.publisher Nature Research
dc.title Growth factor-triggered de-sialylation controls glycolipid-lectin-driven endocytosis
dc.type Article
dc.relation.journal Nature Cell Biology


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