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Cancer-associated fibroblast-secreted glucosamine alters the androgen biosynthesis program in prostate cancer via HSD3B1 upregulation

After androgen deprivation, prostate cancer frequently becomes castration resistant (CRPC), with intratumoral androgen production from extragonadal precursors that activate the androgen receptor pathway. 3β-Hydroxysteroid dehydrogenase-1 (3βHSD1) is the rate-limiting enzyme for extragonadal androgen...

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Autores principales: Cui, Di, Li, Jianneng, Zhu, Ziqi, Berk, Michael, Hardaway, Aimalie, McManus, Jeffrey, Chung, Yoon-Mi, Alyamani, Mohammad, Valle, Shelley, Tiwari, Ritika, Han, Bangmin, Goudarzi, Maryam, Willard, Belinda, Sharifi, Nima
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10065083/
https://www.ncbi.nlm.nih.gov/pubmed/37009898
http://dx.doi.org/10.1172/JCI161913
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author Cui, Di
Li, Jianneng
Zhu, Ziqi
Berk, Michael
Hardaway, Aimalie
McManus, Jeffrey
Chung, Yoon-Mi
Alyamani, Mohammad
Valle, Shelley
Tiwari, Ritika
Han, Bangmin
Goudarzi, Maryam
Willard, Belinda
Sharifi, Nima
author_facet Cui, Di
Li, Jianneng
Zhu, Ziqi
Berk, Michael
Hardaway, Aimalie
McManus, Jeffrey
Chung, Yoon-Mi
Alyamani, Mohammad
Valle, Shelley
Tiwari, Ritika
Han, Bangmin
Goudarzi, Maryam
Willard, Belinda
Sharifi, Nima
author_sort Cui, Di
collection PubMed
description After androgen deprivation, prostate cancer frequently becomes castration resistant (CRPC), with intratumoral androgen production from extragonadal precursors that activate the androgen receptor pathway. 3β-Hydroxysteroid dehydrogenase-1 (3βHSD1) is the rate-limiting enzyme for extragonadal androgen synthesis, which together lead to CRPC. Here, we show that cancer-associated fibroblasts (CAFs) increased epithelial 3βHSD1 expression, induced androgen synthesis, activated the androgen receptor, and induced CRPC. Unbiased metabolomics revealed that CAF-secreted glucosamine specifically induced 3βHSD1. CAFs induced higher GlcNAcylation in cancer cells and elevated expression of the transcription factor Elk1, which induced higher 3βHSD1 expression and activity. Elk1 genetic ablation in cancer epithelial cells suppressed CAF-induced androgen biosynthesis in vivo. In patient samples, multiplex fluorescent imaging showed that tumor cells expressed more 3βHSD1 and Elk1 in CAF-enriched areas compared with CAF-deficient areas. Our findings suggest that CAF-secreted glucosamine increases GlcNAcylation in prostate cancer cells, promoting Elk1-induced HSD3B1 transcription, which upregulates de novo intratumoral androgen synthesis to overcome castration.
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spelling pubmed-100650832023-04-03 Cancer-associated fibroblast-secreted glucosamine alters the androgen biosynthesis program in prostate cancer via HSD3B1 upregulation Cui, Di Li, Jianneng Zhu, Ziqi Berk, Michael Hardaway, Aimalie McManus, Jeffrey Chung, Yoon-Mi Alyamani, Mohammad Valle, Shelley Tiwari, Ritika Han, Bangmin Goudarzi, Maryam Willard, Belinda Sharifi, Nima J Clin Invest Research Article After androgen deprivation, prostate cancer frequently becomes castration resistant (CRPC), with intratumoral androgen production from extragonadal precursors that activate the androgen receptor pathway. 3β-Hydroxysteroid dehydrogenase-1 (3βHSD1) is the rate-limiting enzyme for extragonadal androgen synthesis, which together lead to CRPC. Here, we show that cancer-associated fibroblasts (CAFs) increased epithelial 3βHSD1 expression, induced androgen synthesis, activated the androgen receptor, and induced CRPC. Unbiased metabolomics revealed that CAF-secreted glucosamine specifically induced 3βHSD1. CAFs induced higher GlcNAcylation in cancer cells and elevated expression of the transcription factor Elk1, which induced higher 3βHSD1 expression and activity. Elk1 genetic ablation in cancer epithelial cells suppressed CAF-induced androgen biosynthesis in vivo. In patient samples, multiplex fluorescent imaging showed that tumor cells expressed more 3βHSD1 and Elk1 in CAF-enriched areas compared with CAF-deficient areas. Our findings suggest that CAF-secreted glucosamine increases GlcNAcylation in prostate cancer cells, promoting Elk1-induced HSD3B1 transcription, which upregulates de novo intratumoral androgen synthesis to overcome castration. American Society for Clinical Investigation 2023-04-03 /pmc/articles/PMC10065083/ /pubmed/37009898 http://dx.doi.org/10.1172/JCI161913 Text en © 2023 Di Cui et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Cui, Di
Li, Jianneng
Zhu, Ziqi
Berk, Michael
Hardaway, Aimalie
McManus, Jeffrey
Chung, Yoon-Mi
Alyamani, Mohammad
Valle, Shelley
Tiwari, Ritika
Han, Bangmin
Goudarzi, Maryam
Willard, Belinda
Sharifi, Nima
Cancer-associated fibroblast-secreted glucosamine alters the androgen biosynthesis program in prostate cancer via HSD3B1 upregulation
title Cancer-associated fibroblast-secreted glucosamine alters the androgen biosynthesis program in prostate cancer via HSD3B1 upregulation
title_full Cancer-associated fibroblast-secreted glucosamine alters the androgen biosynthesis program in prostate cancer via HSD3B1 upregulation
title_fullStr Cancer-associated fibroblast-secreted glucosamine alters the androgen biosynthesis program in prostate cancer via HSD3B1 upregulation
title_full_unstemmed Cancer-associated fibroblast-secreted glucosamine alters the androgen biosynthesis program in prostate cancer via HSD3B1 upregulation
title_short Cancer-associated fibroblast-secreted glucosamine alters the androgen biosynthesis program in prostate cancer via HSD3B1 upregulation
title_sort cancer-associated fibroblast-secreted glucosamine alters the androgen biosynthesis program in prostate cancer via hsd3b1 upregulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10065083/
https://www.ncbi.nlm.nih.gov/pubmed/37009898
http://dx.doi.org/10.1172/JCI161913
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