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Ferroptosis sensitization in glioma: exploring the regulatory mechanism of SOAT1 and its therapeutic implications

Glioma, the most common primary malignant tumor of the central nervous system, lacks effective targeted therapies. This study investigates the role of SOAT1, a key gene involved in cholesterol esterification, in glioma prognosis and its association with ferroptosis. Although the impact of SOAT1 on g...

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Autores principales: Sun, Shicheng, Qi, Guoliang, Chen, Hao, He, Dong, Ma, Dengzhen, Bie, Yifan, Xu, Linzong, Feng, Bin, Pang, Qi, Guo, Hua, Zhang, Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10657441/
https://www.ncbi.nlm.nih.gov/pubmed/37980334
http://dx.doi.org/10.1038/s41419-023-06282-1
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author Sun, Shicheng
Qi, Guoliang
Chen, Hao
He, Dong
Ma, Dengzhen
Bie, Yifan
Xu, Linzong
Feng, Bin
Pang, Qi
Guo, Hua
Zhang, Rui
author_facet Sun, Shicheng
Qi, Guoliang
Chen, Hao
He, Dong
Ma, Dengzhen
Bie, Yifan
Xu, Linzong
Feng, Bin
Pang, Qi
Guo, Hua
Zhang, Rui
author_sort Sun, Shicheng
collection PubMed
description Glioma, the most common primary malignant tumor of the central nervous system, lacks effective targeted therapies. This study investigates the role of SOAT1, a key gene involved in cholesterol esterification, in glioma prognosis and its association with ferroptosis. Although the impact of SOAT1 on glioma prognosis has been recognized, its precise mechanism remains unclear. In this study, we demonstrate that inhibiting SOAT1 increases the sensitivity of glioma cells to ferroptosis, both in vitro and in vivo. Mechanistically, SOAT1 positively modulates the expression of SLC40A1, an iron transporter, resulting in enhanced intracellular iron outflow, reduced intracellular iron levels, and subsequent disruption of ferroptosis. Importantly, we find that SOAT1 regulates ferroptosis independently of SREBPs, which are known to be involved in ferroptosis regulation. Furthermore, we identify the involvement of the PI3K-AKT-mTOR signaling pathway in mediating the regulatory effects of SOAT1 on SLC40A1 expression and ferroptosis sensitivity. These findings highlight the contribution of intracellular signaling cascades in the modulation of ferroptosis by SOAT1. We show that inhibiting SOAT1 enhances the efficacy of radiotherapy in gliomas, both in vitro and in vivo, by promoting sensitivity to ferroptosis. This suggests that targeting SOAT1 could potentially improve therapeutic outcomes for glioma patients. In summary, this study uncovers the pivotal role of SOAT1 as a link between cholesterol esterification and ferroptosis in glioma. Our findings underscore the potential of SOAT1 as a promising clinical therapeutic target, providing new avenues for the development of effective treatments for glioma. Further research is warranted to unravel the complete regulatory mechanisms of SOAT1 and explore its clinical applications.
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spelling pubmed-106574412023-11-18 Ferroptosis sensitization in glioma: exploring the regulatory mechanism of SOAT1 and its therapeutic implications Sun, Shicheng Qi, Guoliang Chen, Hao He, Dong Ma, Dengzhen Bie, Yifan Xu, Linzong Feng, Bin Pang, Qi Guo, Hua Zhang, Rui Cell Death Dis Article Glioma, the most common primary malignant tumor of the central nervous system, lacks effective targeted therapies. This study investigates the role of SOAT1, a key gene involved in cholesterol esterification, in glioma prognosis and its association with ferroptosis. Although the impact of SOAT1 on glioma prognosis has been recognized, its precise mechanism remains unclear. In this study, we demonstrate that inhibiting SOAT1 increases the sensitivity of glioma cells to ferroptosis, both in vitro and in vivo. Mechanistically, SOAT1 positively modulates the expression of SLC40A1, an iron transporter, resulting in enhanced intracellular iron outflow, reduced intracellular iron levels, and subsequent disruption of ferroptosis. Importantly, we find that SOAT1 regulates ferroptosis independently of SREBPs, which are known to be involved in ferroptosis regulation. Furthermore, we identify the involvement of the PI3K-AKT-mTOR signaling pathway in mediating the regulatory effects of SOAT1 on SLC40A1 expression and ferroptosis sensitivity. These findings highlight the contribution of intracellular signaling cascades in the modulation of ferroptosis by SOAT1. We show that inhibiting SOAT1 enhances the efficacy of radiotherapy in gliomas, both in vitro and in vivo, by promoting sensitivity to ferroptosis. This suggests that targeting SOAT1 could potentially improve therapeutic outcomes for glioma patients. In summary, this study uncovers the pivotal role of SOAT1 as a link between cholesterol esterification and ferroptosis in glioma. Our findings underscore the potential of SOAT1 as a promising clinical therapeutic target, providing new avenues for the development of effective treatments for glioma. Further research is warranted to unravel the complete regulatory mechanisms of SOAT1 and explore its clinical applications. Nature Publishing Group UK 2023-11-18 /pmc/articles/PMC10657441/ /pubmed/37980334 http://dx.doi.org/10.1038/s41419-023-06282-1 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Sun, Shicheng
Qi, Guoliang
Chen, Hao
He, Dong
Ma, Dengzhen
Bie, Yifan
Xu, Linzong
Feng, Bin
Pang, Qi
Guo, Hua
Zhang, Rui
Ferroptosis sensitization in glioma: exploring the regulatory mechanism of SOAT1 and its therapeutic implications
title Ferroptosis sensitization in glioma: exploring the regulatory mechanism of SOAT1 and its therapeutic implications
title_full Ferroptosis sensitization in glioma: exploring the regulatory mechanism of SOAT1 and its therapeutic implications
title_fullStr Ferroptosis sensitization in glioma: exploring the regulatory mechanism of SOAT1 and its therapeutic implications
title_full_unstemmed Ferroptosis sensitization in glioma: exploring the regulatory mechanism of SOAT1 and its therapeutic implications
title_short Ferroptosis sensitization in glioma: exploring the regulatory mechanism of SOAT1 and its therapeutic implications
title_sort ferroptosis sensitization in glioma: exploring the regulatory mechanism of soat1 and its therapeutic implications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10657441/
https://www.ncbi.nlm.nih.gov/pubmed/37980334
http://dx.doi.org/10.1038/s41419-023-06282-1
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