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Lysosome‐dependent FOXA1 ubiquitination contributes to luminal lineage of advanced prostate cancer

Changes in FOXA1 (forkhead box protein A1) protein levels are well associated with prostate cancer (PCa) progression. Unfortunately, direct targeting of FOXA1 in progressive PCa remains challenging due to variations in FOXA1 protein levels, increased FOXA1 mutations at different stages of PCa, and e...

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Autores principales: Celada, Sherly I., Li, Guoliang, Celada, Lindsay J., Lu, Wenfu, Kanagasabai, Thanigaivelan, Feng, Weiran, Cao, Zhen, Salsabeel, Nazifa, Mao, Ninghui, Brown, LaKendria K., Mark, Zaniya A., Izban, Michael G., Ballard, Billy R., Zhou, Xinchun, Adunyah, Samuel E., Matusik, Robert J., Wang, Xiaofei, Chen, Zhenbang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10552895/
https://www.ncbi.nlm.nih.gov/pubmed/37491794
http://dx.doi.org/10.1002/1878-0261.13497
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author Celada, Sherly I.
Li, Guoliang
Celada, Lindsay J.
Lu, Wenfu
Kanagasabai, Thanigaivelan
Feng, Weiran
Cao, Zhen
Salsabeel, Nazifa
Mao, Ninghui
Brown, LaKendria K.
Mark, Zaniya A.
Izban, Michael G.
Ballard, Billy R.
Zhou, Xinchun
Adunyah, Samuel E.
Matusik, Robert J.
Wang, Xiaofei
Chen, Zhenbang
author_facet Celada, Sherly I.
Li, Guoliang
Celada, Lindsay J.
Lu, Wenfu
Kanagasabai, Thanigaivelan
Feng, Weiran
Cao, Zhen
Salsabeel, Nazifa
Mao, Ninghui
Brown, LaKendria K.
Mark, Zaniya A.
Izban, Michael G.
Ballard, Billy R.
Zhou, Xinchun
Adunyah, Samuel E.
Matusik, Robert J.
Wang, Xiaofei
Chen, Zhenbang
author_sort Celada, Sherly I.
collection PubMed
description Changes in FOXA1 (forkhead box protein A1) protein levels are well associated with prostate cancer (PCa) progression. Unfortunately, direct targeting of FOXA1 in progressive PCa remains challenging due to variations in FOXA1 protein levels, increased FOXA1 mutations at different stages of PCa, and elusive post‐translational FOXA1 regulating mechanisms. Here, we show that SKP2 (S‐phase kinase‐associated protein 2) catalyzes K6‐ and K29‐linked polyubiquitination of FOXA1 for lysosomal‐dependent degradation. Our data indicate increased SKP2:FOXA1 protein ratios in stage IV human PCa compared to stages I–III, together with a strong inverse correlation (r = −0.9659) between SKP2 and FOXA1 levels, suggesting that SKP2–FOXA1 protein interactions play a significant role in PCa progression. Prostate tumors of Pten/Trp53 mice displayed increased Skp2–Foxa1–Pcna signaling and colocalization, whereas disruption of the Skp2–Foxa1 interplay in Pten/Trp53/Skp2 triple‐null mice demonstrated decreased Pcna levels and increased expression of Foxa1 and luminal positive cells. Treatment of xenograft mice with the SKP2 inhibitor SZL P1‐41 decreased tumor proliferation, SKP2:FOXA1 ratios, and colocalization. Thus, our results highlight the significance of the SKP2–FOXA1 interplay on the luminal lineage in PCa and the potential of therapeutically targeting FOXA1 through SKP2 to improve PCa control.
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spelling pubmed-105528952023-10-06 Lysosome‐dependent FOXA1 ubiquitination contributes to luminal lineage of advanced prostate cancer Celada, Sherly I. Li, Guoliang Celada, Lindsay J. Lu, Wenfu Kanagasabai, Thanigaivelan Feng, Weiran Cao, Zhen Salsabeel, Nazifa Mao, Ninghui Brown, LaKendria K. Mark, Zaniya A. Izban, Michael G. Ballard, Billy R. Zhou, Xinchun Adunyah, Samuel E. Matusik, Robert J. Wang, Xiaofei Chen, Zhenbang Mol Oncol Research Articles Changes in FOXA1 (forkhead box protein A1) protein levels are well associated with prostate cancer (PCa) progression. Unfortunately, direct targeting of FOXA1 in progressive PCa remains challenging due to variations in FOXA1 protein levels, increased FOXA1 mutations at different stages of PCa, and elusive post‐translational FOXA1 regulating mechanisms. Here, we show that SKP2 (S‐phase kinase‐associated protein 2) catalyzes K6‐ and K29‐linked polyubiquitination of FOXA1 for lysosomal‐dependent degradation. Our data indicate increased SKP2:FOXA1 protein ratios in stage IV human PCa compared to stages I–III, together with a strong inverse correlation (r = −0.9659) between SKP2 and FOXA1 levels, suggesting that SKP2–FOXA1 protein interactions play a significant role in PCa progression. Prostate tumors of Pten/Trp53 mice displayed increased Skp2–Foxa1–Pcna signaling and colocalization, whereas disruption of the Skp2–Foxa1 interplay in Pten/Trp53/Skp2 triple‐null mice demonstrated decreased Pcna levels and increased expression of Foxa1 and luminal positive cells. Treatment of xenograft mice with the SKP2 inhibitor SZL P1‐41 decreased tumor proliferation, SKP2:FOXA1 ratios, and colocalization. Thus, our results highlight the significance of the SKP2–FOXA1 interplay on the luminal lineage in PCa and the potential of therapeutically targeting FOXA1 through SKP2 to improve PCa control. John Wiley and Sons Inc. 2023-08-21 /pmc/articles/PMC10552895/ /pubmed/37491794 http://dx.doi.org/10.1002/1878-0261.13497 Text en © 2023 The Authors. Molecular Oncology published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Celada, Sherly I.
Li, Guoliang
Celada, Lindsay J.
Lu, Wenfu
Kanagasabai, Thanigaivelan
Feng, Weiran
Cao, Zhen
Salsabeel, Nazifa
Mao, Ninghui
Brown, LaKendria K.
Mark, Zaniya A.
Izban, Michael G.
Ballard, Billy R.
Zhou, Xinchun
Adunyah, Samuel E.
Matusik, Robert J.
Wang, Xiaofei
Chen, Zhenbang
Lysosome‐dependent FOXA1 ubiquitination contributes to luminal lineage of advanced prostate cancer
title Lysosome‐dependent FOXA1 ubiquitination contributes to luminal lineage of advanced prostate cancer
title_full Lysosome‐dependent FOXA1 ubiquitination contributes to luminal lineage of advanced prostate cancer
title_fullStr Lysosome‐dependent FOXA1 ubiquitination contributes to luminal lineage of advanced prostate cancer
title_full_unstemmed Lysosome‐dependent FOXA1 ubiquitination contributes to luminal lineage of advanced prostate cancer
title_short Lysosome‐dependent FOXA1 ubiquitination contributes to luminal lineage of advanced prostate cancer
title_sort lysosome‐dependent foxa1 ubiquitination contributes to luminal lineage of advanced prostate cancer
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10552895/
https://www.ncbi.nlm.nih.gov/pubmed/37491794
http://dx.doi.org/10.1002/1878-0261.13497
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