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Hypoxia inducible lncRNA-CBSLR modulates ferroptosis through m6A-YTHDF2-dependent modulation of CBS in gastric cancer

INTRODUCTION: Tumors are usually refractory to anti-cancer therapeutics under hypoxic conditions. However, the underlying molecular mechanism remains to be elucidated. OBJECTIVES: Our study intended to identify hypoxia inducible lncRNAs and their biological function in gastric cancer (GC). METHODS:...

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Autores principales: Yang, Hui, Hu, Yiren, Weng, Mingzhe, Liu, Xiaocen, Wan, Ping, Hu, Ye, Ma, Mingzhe, Zhang, Yan, Xia, Hongping, Lv, Kun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9039740/
https://www.ncbi.nlm.nih.gov/pubmed/35499052
http://dx.doi.org/10.1016/j.jare.2021.10.001
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author Yang, Hui
Hu, Yiren
Weng, Mingzhe
Liu, Xiaocen
Wan, Ping
Hu, Ye
Ma, Mingzhe
Zhang, Yan
Xia, Hongping
Lv, Kun
author_facet Yang, Hui
Hu, Yiren
Weng, Mingzhe
Liu, Xiaocen
Wan, Ping
Hu, Ye
Ma, Mingzhe
Zhang, Yan
Xia, Hongping
Lv, Kun
author_sort Yang, Hui
collection PubMed
description INTRODUCTION: Tumors are usually refractory to anti-cancer therapeutics under hypoxic conditions. However, the underlying molecular mechanism remains to be elucidated. OBJECTIVES: Our study intended to identify hypoxia inducible lncRNAs and their biological function in gastric cancer (GC). METHODS: Differentially expressed lncRNAs were determined by microarray analysis between GC cells exposed to hypoxia (1% O(2)) and normoxia (21% O(2)) for 24 h. The expression level of CBSLR was manipulated in several GC cell lines to perform molecular and biological analyses both in vitro and in vivo. RESULTS: We identified a hypoxia-induced lncRNA-CBSLR that protected GC cells from ferroptosis, leading to chem-resistance. Mechanically, CBSLR interacted with YTHDF2 to form a CBSLR/YTHDF2/CBS signaling axis that decreased the stability of CBS mRNA by enhancing the binding of YTHDF2 with the m6A-modified coding sequence (CDS) of CBS mRNA. Furthermore, under decreased CBS levels, the methylation of the ACSL4 protein was reduced, leading to protein polyubiquitination and degradation of ACSL4. This, in turn, decreased the pro-ferroptosis phosphatidylethanolamine (PE) (18:0/20:4) and PE (18:0/22:4) content and contributed to ferroptosis resistance. Notably, CBSLR is upregulated, whereas CBS is downregulated in GC tissues compared to matched normal tissues; and GC patients with high CBSLR/low CBS levels have a worse clinical outcome and a poorer response to chemotherapy. CONCLUSION: Our study reveals a novel mechanism in how HIF1α/CBSLR modulates ferroptosis/chemoresistance in GC, illuminating potential therapeutic targets for refractory hypoxic tumors.
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spelling pubmed-90397402022-04-27 Hypoxia inducible lncRNA-CBSLR modulates ferroptosis through m6A-YTHDF2-dependent modulation of CBS in gastric cancer Yang, Hui Hu, Yiren Weng, Mingzhe Liu, Xiaocen Wan, Ping Hu, Ye Ma, Mingzhe Zhang, Yan Xia, Hongping Lv, Kun J Adv Res Basic and Biological Science INTRODUCTION: Tumors are usually refractory to anti-cancer therapeutics under hypoxic conditions. However, the underlying molecular mechanism remains to be elucidated. OBJECTIVES: Our study intended to identify hypoxia inducible lncRNAs and their biological function in gastric cancer (GC). METHODS: Differentially expressed lncRNAs were determined by microarray analysis between GC cells exposed to hypoxia (1% O(2)) and normoxia (21% O(2)) for 24 h. The expression level of CBSLR was manipulated in several GC cell lines to perform molecular and biological analyses both in vitro and in vivo. RESULTS: We identified a hypoxia-induced lncRNA-CBSLR that protected GC cells from ferroptosis, leading to chem-resistance. Mechanically, CBSLR interacted with YTHDF2 to form a CBSLR/YTHDF2/CBS signaling axis that decreased the stability of CBS mRNA by enhancing the binding of YTHDF2 with the m6A-modified coding sequence (CDS) of CBS mRNA. Furthermore, under decreased CBS levels, the methylation of the ACSL4 protein was reduced, leading to protein polyubiquitination and degradation of ACSL4. This, in turn, decreased the pro-ferroptosis phosphatidylethanolamine (PE) (18:0/20:4) and PE (18:0/22:4) content and contributed to ferroptosis resistance. Notably, CBSLR is upregulated, whereas CBS is downregulated in GC tissues compared to matched normal tissues; and GC patients with high CBSLR/low CBS levels have a worse clinical outcome and a poorer response to chemotherapy. CONCLUSION: Our study reveals a novel mechanism in how HIF1α/CBSLR modulates ferroptosis/chemoresistance in GC, illuminating potential therapeutic targets for refractory hypoxic tumors. Elsevier 2021-10-05 /pmc/articles/PMC9039740/ /pubmed/35499052 http://dx.doi.org/10.1016/j.jare.2021.10.001 Text en © 2022 The Authors. Published by Elsevier B.V. on behalf of Cairo University. 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 Basic and Biological Science
Yang, Hui
Hu, Yiren
Weng, Mingzhe
Liu, Xiaocen
Wan, Ping
Hu, Ye
Ma, Mingzhe
Zhang, Yan
Xia, Hongping
Lv, Kun
Hypoxia inducible lncRNA-CBSLR modulates ferroptosis through m6A-YTHDF2-dependent modulation of CBS in gastric cancer
title Hypoxia inducible lncRNA-CBSLR modulates ferroptosis through m6A-YTHDF2-dependent modulation of CBS in gastric cancer
title_full Hypoxia inducible lncRNA-CBSLR modulates ferroptosis through m6A-YTHDF2-dependent modulation of CBS in gastric cancer
title_fullStr Hypoxia inducible lncRNA-CBSLR modulates ferroptosis through m6A-YTHDF2-dependent modulation of CBS in gastric cancer
title_full_unstemmed Hypoxia inducible lncRNA-CBSLR modulates ferroptosis through m6A-YTHDF2-dependent modulation of CBS in gastric cancer
title_short Hypoxia inducible lncRNA-CBSLR modulates ferroptosis through m6A-YTHDF2-dependent modulation of CBS in gastric cancer
title_sort hypoxia inducible lncrna-cbslr modulates ferroptosis through m6a-ythdf2-dependent modulation of cbs in gastric cancer
topic Basic and Biological Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9039740/
https://www.ncbi.nlm.nih.gov/pubmed/35499052
http://dx.doi.org/10.1016/j.jare.2021.10.001
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