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Glutamine deprivation triggers NAGK-dependent hexosamine salvage

Tumors frequently exhibit aberrant glycosylation, which can impact cancer progression and therapeutic responses. The hexosamine biosynthesis pathway (HBP) produces uridine diphosphate N-acetylglucosamine (UDP-GlcNAc), a major substrate for glycosylation in the cell. Prior studies have identified the...

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Autores principales: Campbell, Sydney, Mesaros, Clementina, Izzo, Luke, Affronti, Hayley, Noji, Michael, Schaffer, Bethany E, Tsang, Tiffany, Sun, Kathryn, Trefely, Sophie, Kruijning, Salisa, Blenis, John, Blair, Ian A, Wellen, Kathryn E
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8631944/
https://www.ncbi.nlm.nih.gov/pubmed/34844667
http://dx.doi.org/10.7554/eLife.62644
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author Campbell, Sydney
Mesaros, Clementina
Izzo, Luke
Affronti, Hayley
Noji, Michael
Schaffer, Bethany E
Tsang, Tiffany
Sun, Kathryn
Trefely, Sophie
Kruijning, Salisa
Blenis, John
Blair, Ian A
Wellen, Kathryn E
author_facet Campbell, Sydney
Mesaros, Clementina
Izzo, Luke
Affronti, Hayley
Noji, Michael
Schaffer, Bethany E
Tsang, Tiffany
Sun, Kathryn
Trefely, Sophie
Kruijning, Salisa
Blenis, John
Blair, Ian A
Wellen, Kathryn E
author_sort Campbell, Sydney
collection PubMed
description Tumors frequently exhibit aberrant glycosylation, which can impact cancer progression and therapeutic responses. The hexosamine biosynthesis pathway (HBP) produces uridine diphosphate N-acetylglucosamine (UDP-GlcNAc), a major substrate for glycosylation in the cell. Prior studies have identified the HBP as a promising therapeutic target in pancreatic ductal adenocarcinoma (PDA). The HBP requires both glucose and glutamine for its initiation. The PDA tumor microenvironment is nutrient poor, however, prompting us to investigate how nutrient limitation impacts hexosamine synthesis. Here, we identify that glutamine limitation in PDA cells suppresses de novo hexosamine synthesis but results in increased free GlcNAc abundance. GlcNAc salvage via N-acetylglucosamine kinase (NAGK) is engaged to feed UDP-GlcNAc pools. NAGK expression is elevated in human PDA, and NAGK deletion from PDA cells impairs tumor growth in mice. Together, these data identify an important role for NAGK-dependent hexosamine salvage in supporting PDA tumor growth.
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spelling pubmed-86319442021-12-02 Glutamine deprivation triggers NAGK-dependent hexosamine salvage Campbell, Sydney Mesaros, Clementina Izzo, Luke Affronti, Hayley Noji, Michael Schaffer, Bethany E Tsang, Tiffany Sun, Kathryn Trefely, Sophie Kruijning, Salisa Blenis, John Blair, Ian A Wellen, Kathryn E eLife Cancer Biology Tumors frequently exhibit aberrant glycosylation, which can impact cancer progression and therapeutic responses. The hexosamine biosynthesis pathway (HBP) produces uridine diphosphate N-acetylglucosamine (UDP-GlcNAc), a major substrate for glycosylation in the cell. Prior studies have identified the HBP as a promising therapeutic target in pancreatic ductal adenocarcinoma (PDA). The HBP requires both glucose and glutamine for its initiation. The PDA tumor microenvironment is nutrient poor, however, prompting us to investigate how nutrient limitation impacts hexosamine synthesis. Here, we identify that glutamine limitation in PDA cells suppresses de novo hexosamine synthesis but results in increased free GlcNAc abundance. GlcNAc salvage via N-acetylglucosamine kinase (NAGK) is engaged to feed UDP-GlcNAc pools. NAGK expression is elevated in human PDA, and NAGK deletion from PDA cells impairs tumor growth in mice. Together, these data identify an important role for NAGK-dependent hexosamine salvage in supporting PDA tumor growth. eLife Sciences Publications, Ltd 2021-11-30 /pmc/articles/PMC8631944/ /pubmed/34844667 http://dx.doi.org/10.7554/eLife.62644 Text en © 2021, Campbell et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cancer Biology
Campbell, Sydney
Mesaros, Clementina
Izzo, Luke
Affronti, Hayley
Noji, Michael
Schaffer, Bethany E
Tsang, Tiffany
Sun, Kathryn
Trefely, Sophie
Kruijning, Salisa
Blenis, John
Blair, Ian A
Wellen, Kathryn E
Glutamine deprivation triggers NAGK-dependent hexosamine salvage
title Glutamine deprivation triggers NAGK-dependent hexosamine salvage
title_full Glutamine deprivation triggers NAGK-dependent hexosamine salvage
title_fullStr Glutamine deprivation triggers NAGK-dependent hexosamine salvage
title_full_unstemmed Glutamine deprivation triggers NAGK-dependent hexosamine salvage
title_short Glutamine deprivation triggers NAGK-dependent hexosamine salvage
title_sort glutamine deprivation triggers nagk-dependent hexosamine salvage
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8631944/
https://www.ncbi.nlm.nih.gov/pubmed/34844667
http://dx.doi.org/10.7554/eLife.62644
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