Cargando…

Novel roles for HMGA2 isoforms in regulating oxidative stress and sensitizing to RSL3-Induced ferroptosis in prostate cancer cells

Oxidative stress is increased in several cancers including prostate cancer, and is currently being exploited in cancer therapy to induce ferroptosis, a novel nonapoptotic form of cell death. High mobility group A2 (HMGA2), a non-histone protein up-regulated in several cancers, can be truncated due t...

Descripción completa

Detalles Bibliográficos
Autores principales: Campbell, Taaliah, Hawsawi, Ohuod, Henderson, Veronica, Dike, Precious, Hwang, Bor-Jang, Liadi, Yusuf, White, ElShaddai Z., Zou, Jin, Wang, GuangDi, Zhang, Qiang, Bowen, Nathan, Scott, Derrick, Hinton, Cimona V., Odero-Marah, Valerie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10126861/
https://www.ncbi.nlm.nih.gov/pubmed/37113783
http://dx.doi.org/10.1016/j.heliyon.2023.e14810
_version_ 1785030350809858048
author Campbell, Taaliah
Hawsawi, Ohuod
Henderson, Veronica
Dike, Precious
Hwang, Bor-Jang
Liadi, Yusuf
White, ElShaddai Z.
Zou, Jin
Wang, GuangDi
Zhang, Qiang
Bowen, Nathan
Scott, Derrick
Hinton, Cimona V.
Odero-Marah, Valerie
author_facet Campbell, Taaliah
Hawsawi, Ohuod
Henderson, Veronica
Dike, Precious
Hwang, Bor-Jang
Liadi, Yusuf
White, ElShaddai Z.
Zou, Jin
Wang, GuangDi
Zhang, Qiang
Bowen, Nathan
Scott, Derrick
Hinton, Cimona V.
Odero-Marah, Valerie
author_sort Campbell, Taaliah
collection PubMed
description Oxidative stress is increased in several cancers including prostate cancer, and is currently being exploited in cancer therapy to induce ferroptosis, a novel nonapoptotic form of cell death. High mobility group A2 (HMGA2), a non-histone protein up-regulated in several cancers, can be truncated due to chromosomal rearrangement or alternative splicing of HMGA2 gene. The purpose of this study is to investigate the role of wild-type vs. truncated HMGA2 in prostate cancer (PCa). We analyzed the expression of wild-type vs. truncated HMGA2 and showed that prostate cancer patient tissue and some cell lines expressed increasing amounts of both wild-type and truncated HMGA2 with increasing tumor grade, compared to normal epithelial cells. RNA-Seq analysis of LNCaP prostate cancer cells stably overexpressing wild-type HMGA2 (HMGA2-WT), truncated HMGA2 (HMGA2-TR) or empty vector (Neo) control revealed that HMGA2-TR cells exhibited higher oxidative stress compared to HMGA2-WT or Neo control cells, which was also confirmed by analysis of basal reactive oxygen species (ROS) levels using 2′, 7′-dichlorofluorescin diacetate (DCFDA) dye, the ratio of reduced glutathione/oxidized glutathione (GSH/GSSG) and NADP/NADPH using metabolomics. This was associated with increased sensitivity to RAS-selective lethal 3 (RSL3)-induced ferroptosis that could be antagonized by ferrostatin-1. Additionally, proteomic and immunoprecipitation analyses showed that cytoplasmic HMGA2 protein interacted with Ras GTPase-activating protein-binding protein 1 (G3BP1), a cytoplasmic stress granule protein that responds to oxidative stress, and that G3BP1 transient knockdown increased sensitivity to ferroptosis even further. Endogenous knockdown of HMGA2 or G3BP1 in PC3 cells reduced proliferation which was reversed by ferrostatin-1. In conclusion, we show a novel role for HMGA2 in oxidative stress, particularly the truncated HMGA2, which may be a therapeutic target for ferroptosis-mediated prostate cancer therapy.
format Online
Article
Text
id pubmed-10126861
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-101268612023-04-26 Novel roles for HMGA2 isoforms in regulating oxidative stress and sensitizing to RSL3-Induced ferroptosis in prostate cancer cells Campbell, Taaliah Hawsawi, Ohuod Henderson, Veronica Dike, Precious Hwang, Bor-Jang Liadi, Yusuf White, ElShaddai Z. Zou, Jin Wang, GuangDi Zhang, Qiang Bowen, Nathan Scott, Derrick Hinton, Cimona V. Odero-Marah, Valerie Heliyon Research Article Oxidative stress is increased in several cancers including prostate cancer, and is currently being exploited in cancer therapy to induce ferroptosis, a novel nonapoptotic form of cell death. High mobility group A2 (HMGA2), a non-histone protein up-regulated in several cancers, can be truncated due to chromosomal rearrangement or alternative splicing of HMGA2 gene. The purpose of this study is to investigate the role of wild-type vs. truncated HMGA2 in prostate cancer (PCa). We analyzed the expression of wild-type vs. truncated HMGA2 and showed that prostate cancer patient tissue and some cell lines expressed increasing amounts of both wild-type and truncated HMGA2 with increasing tumor grade, compared to normal epithelial cells. RNA-Seq analysis of LNCaP prostate cancer cells stably overexpressing wild-type HMGA2 (HMGA2-WT), truncated HMGA2 (HMGA2-TR) or empty vector (Neo) control revealed that HMGA2-TR cells exhibited higher oxidative stress compared to HMGA2-WT or Neo control cells, which was also confirmed by analysis of basal reactive oxygen species (ROS) levels using 2′, 7′-dichlorofluorescin diacetate (DCFDA) dye, the ratio of reduced glutathione/oxidized glutathione (GSH/GSSG) and NADP/NADPH using metabolomics. This was associated with increased sensitivity to RAS-selective lethal 3 (RSL3)-induced ferroptosis that could be antagonized by ferrostatin-1. Additionally, proteomic and immunoprecipitation analyses showed that cytoplasmic HMGA2 protein interacted with Ras GTPase-activating protein-binding protein 1 (G3BP1), a cytoplasmic stress granule protein that responds to oxidative stress, and that G3BP1 transient knockdown increased sensitivity to ferroptosis even further. Endogenous knockdown of HMGA2 or G3BP1 in PC3 cells reduced proliferation which was reversed by ferrostatin-1. In conclusion, we show a novel role for HMGA2 in oxidative stress, particularly the truncated HMGA2, which may be a therapeutic target for ferroptosis-mediated prostate cancer therapy. Elsevier 2023-04-07 /pmc/articles/PMC10126861/ /pubmed/37113783 http://dx.doi.org/10.1016/j.heliyon.2023.e14810 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Campbell, Taaliah
Hawsawi, Ohuod
Henderson, Veronica
Dike, Precious
Hwang, Bor-Jang
Liadi, Yusuf
White, ElShaddai Z.
Zou, Jin
Wang, GuangDi
Zhang, Qiang
Bowen, Nathan
Scott, Derrick
Hinton, Cimona V.
Odero-Marah, Valerie
Novel roles for HMGA2 isoforms in regulating oxidative stress and sensitizing to RSL3-Induced ferroptosis in prostate cancer cells
title Novel roles for HMGA2 isoforms in regulating oxidative stress and sensitizing to RSL3-Induced ferroptosis in prostate cancer cells
title_full Novel roles for HMGA2 isoforms in regulating oxidative stress and sensitizing to RSL3-Induced ferroptosis in prostate cancer cells
title_fullStr Novel roles for HMGA2 isoforms in regulating oxidative stress and sensitizing to RSL3-Induced ferroptosis in prostate cancer cells
title_full_unstemmed Novel roles for HMGA2 isoforms in regulating oxidative stress and sensitizing to RSL3-Induced ferroptosis in prostate cancer cells
title_short Novel roles for HMGA2 isoforms in regulating oxidative stress and sensitizing to RSL3-Induced ferroptosis in prostate cancer cells
title_sort novel roles for hmga2 isoforms in regulating oxidative stress and sensitizing to rsl3-induced ferroptosis in prostate cancer cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10126861/
https://www.ncbi.nlm.nih.gov/pubmed/37113783
http://dx.doi.org/10.1016/j.heliyon.2023.e14810
work_keys_str_mv AT campbelltaaliah novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT hawsawiohuod novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT hendersonveronica novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT dikeprecious novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT hwangborjang novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT liadiyusuf novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT whiteelshaddaiz novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT zoujin novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT wangguangdi novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT zhangqiang novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT bowennathan novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT scottderrick novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT hintoncimonav novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells
AT oderomarahvalerie novelrolesforhmga2isoformsinregulatingoxidativestressandsensitizingtorsl3inducedferroptosisinprostatecancercells