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Sialylation of EGFR by ST6GAL1 induces receptor activation and modulates trafficking dynamics

Aberrant glycosylation is a hallmark of a cancer cell. One prevalent alteration is an enrichment in α2,6-linked sialylation of N-glycosylated proteins, a modification directed by the ST6GAL1 sialyltransferase. ST6GAL1 is upregulated in many malignancies including ovarian cancer. Prior studies have s...

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Autores principales: Ankenbauer, Katherine E., Rao, Tejeshwar C., Mattheyses, Alexa L., Bellis, Susan L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312608/
https://www.ncbi.nlm.nih.gov/pubmed/37398202
http://dx.doi.org/10.1101/2023.06.03.543566
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author Ankenbauer, Katherine E.
Rao, Tejeshwar C.
Mattheyses, Alexa L.
Bellis, Susan L.
author_facet Ankenbauer, Katherine E.
Rao, Tejeshwar C.
Mattheyses, Alexa L.
Bellis, Susan L.
author_sort Ankenbauer, Katherine E.
collection PubMed
description Aberrant glycosylation is a hallmark of a cancer cell. One prevalent alteration is an enrichment in α2,6-linked sialylation of N-glycosylated proteins, a modification directed by the ST6GAL1 sialyltransferase. ST6GAL1 is upregulated in many malignancies including ovarian cancer. Prior studies have shown that the addition of α2,6 sialic acid to the Epidermal Growth Factor Receptor (EGFR) activates this receptor, although the mechanism was largely unknown. To investigate the role of ST6GAL1 in EGFR activation, ST6GAL1 was overexpressed in the OV4 ovarian cancer line, which lacks endogenous ST6GAL1, or knocked down in the OVCAR-3 and OVCAR-5 ovarian cancer lines, which have robust ST6GAL1 expression. Cells with high expression of ST6GAL1 displayed increased activation of EGFR and its downstream signaling targets, AKT and NFκB. Using biochemical and microscopy approaches, including Total Internal Reflection Fluorescence (TIRF) microscopy, we determined that the α2,6 sialylation of EGFR promoted its dimerization and higher order oligomerization. Additionally, ST6GAL1 activity was found to modulate EGFR trafficking dynamics following EGF-induced receptor activation. Specifically, EGFR sialylation enhanced receptor recycling to the cell surface following activation while simultaneously inhibiting lysosomal degradation. 3D widefield deconvolution microscopy confirmed that in cells with high ST6GAL1 expression, EGFR exhibited greater co-localization with Rab11 recycling endosomes and reduced co-localization with LAMP1-positive lysosomes. Collectively, our findings highlight a novel mechanism by which α2,6 sialylation promotes EGFR signaling by facilitating receptor oligomerization and recycling.
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spelling pubmed-103126082023-07-01 Sialylation of EGFR by ST6GAL1 induces receptor activation and modulates trafficking dynamics Ankenbauer, Katherine E. Rao, Tejeshwar C. Mattheyses, Alexa L. Bellis, Susan L. bioRxiv Article Aberrant glycosylation is a hallmark of a cancer cell. One prevalent alteration is an enrichment in α2,6-linked sialylation of N-glycosylated proteins, a modification directed by the ST6GAL1 sialyltransferase. ST6GAL1 is upregulated in many malignancies including ovarian cancer. Prior studies have shown that the addition of α2,6 sialic acid to the Epidermal Growth Factor Receptor (EGFR) activates this receptor, although the mechanism was largely unknown. To investigate the role of ST6GAL1 in EGFR activation, ST6GAL1 was overexpressed in the OV4 ovarian cancer line, which lacks endogenous ST6GAL1, or knocked down in the OVCAR-3 and OVCAR-5 ovarian cancer lines, which have robust ST6GAL1 expression. Cells with high expression of ST6GAL1 displayed increased activation of EGFR and its downstream signaling targets, AKT and NFκB. Using biochemical and microscopy approaches, including Total Internal Reflection Fluorescence (TIRF) microscopy, we determined that the α2,6 sialylation of EGFR promoted its dimerization and higher order oligomerization. Additionally, ST6GAL1 activity was found to modulate EGFR trafficking dynamics following EGF-induced receptor activation. Specifically, EGFR sialylation enhanced receptor recycling to the cell surface following activation while simultaneously inhibiting lysosomal degradation. 3D widefield deconvolution microscopy confirmed that in cells with high ST6GAL1 expression, EGFR exhibited greater co-localization with Rab11 recycling endosomes and reduced co-localization with LAMP1-positive lysosomes. Collectively, our findings highlight a novel mechanism by which α2,6 sialylation promotes EGFR signaling by facilitating receptor oligomerization and recycling. Cold Spring Harbor Laboratory 2023-06-04 /pmc/articles/PMC10312608/ /pubmed/37398202 http://dx.doi.org/10.1101/2023.06.03.543566 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Ankenbauer, Katherine E.
Rao, Tejeshwar C.
Mattheyses, Alexa L.
Bellis, Susan L.
Sialylation of EGFR by ST6GAL1 induces receptor activation and modulates trafficking dynamics
title Sialylation of EGFR by ST6GAL1 induces receptor activation and modulates trafficking dynamics
title_full Sialylation of EGFR by ST6GAL1 induces receptor activation and modulates trafficking dynamics
title_fullStr Sialylation of EGFR by ST6GAL1 induces receptor activation and modulates trafficking dynamics
title_full_unstemmed Sialylation of EGFR by ST6GAL1 induces receptor activation and modulates trafficking dynamics
title_short Sialylation of EGFR by ST6GAL1 induces receptor activation and modulates trafficking dynamics
title_sort sialylation of egfr by st6gal1 induces receptor activation and modulates trafficking dynamics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312608/
https://www.ncbi.nlm.nih.gov/pubmed/37398202
http://dx.doi.org/10.1101/2023.06.03.543566
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