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A Novel Ferroptosis-Related Gene Signature for Prognosis Prediction in Ewing Sarcoma

Ferroptosis, as a form of programmed cell death independent of apoptosis, has been demonstrated that plays a major role in tumorigenesis and cancer treatment. A comprehensive analysis of ferroptosis-related genes (FRGs) may lead to a novel choice for the treatment of Ewing sarcoma (ES). Here, 148 di...

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Autores principales: Zhao, Runhan, Li, Zefang, Huang, Yanran, Xiong, Chuang, Zhang, Chao, Liang, Hao, Xu, Jingtao, Luo, Xiaoji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9425108/
https://www.ncbi.nlm.nih.gov/pubmed/36050939
http://dx.doi.org/10.1155/2022/6711629
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author Zhao, Runhan
Li, Zefang
Huang, Yanran
Xiong, Chuang
Zhang, Chao
Liang, Hao
Xu, Jingtao
Luo, Xiaoji
author_facet Zhao, Runhan
Li, Zefang
Huang, Yanran
Xiong, Chuang
Zhang, Chao
Liang, Hao
Xu, Jingtao
Luo, Xiaoji
author_sort Zhao, Runhan
collection PubMed
description Ferroptosis, as a form of programmed cell death independent of apoptosis, has been demonstrated that plays a major role in tumorigenesis and cancer treatment. A comprehensive analysis of ferroptosis-related genes (FRGs) may lead to a novel choice for the treatment of Ewing sarcoma (ES). Here, 148 differentially expressed FRGs (DEFRGs) were identified between normal and ES tissue. And the GO and KEGG analyses of DEFRGs indicated that these genes were enriched in cancer and immune-related signaling pathways. Then, the GSE17679 cohort was randomly divided into train and test cohorts. Based on the train cohort, AURKA, RGS4, and RIPK1 were identified as key genes through the univariate Cox regression analysis, the random survival forest algorithm, and the multivariate Cox regression analysis and utilized to establish a prognostic FRG signature. The validation results demonstrated that the gene signature has not only excellent prediction performance and generalization ability but is also good at predicting the response of immunotherapy and chemotherapy. Subsequent analysis indicated that all 3 key genes play key roles in tumor immunity and prognosis of ES. Of these, AURKA was highly associated with EWSR1, which was verified by a single-cell dataset (GSE130019). Therefore, the 3 genes may be potential therapeutic targets for ES. At the end of this study, we also constructed an accurate nomogram that helps clinicians to assess the survival time of ES patients. In conclusion, our study constructed an excellent gene signature, which is helpful in improving the prognosis of ES patients.
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spelling pubmed-94251082022-08-31 A Novel Ferroptosis-Related Gene Signature for Prognosis Prediction in Ewing Sarcoma Zhao, Runhan Li, Zefang Huang, Yanran Xiong, Chuang Zhang, Chao Liang, Hao Xu, Jingtao Luo, Xiaoji Anal Cell Pathol (Amst) Research Article Ferroptosis, as a form of programmed cell death independent of apoptosis, has been demonstrated that plays a major role in tumorigenesis and cancer treatment. A comprehensive analysis of ferroptosis-related genes (FRGs) may lead to a novel choice for the treatment of Ewing sarcoma (ES). Here, 148 differentially expressed FRGs (DEFRGs) were identified between normal and ES tissue. And the GO and KEGG analyses of DEFRGs indicated that these genes were enriched in cancer and immune-related signaling pathways. Then, the GSE17679 cohort was randomly divided into train and test cohorts. Based on the train cohort, AURKA, RGS4, and RIPK1 were identified as key genes through the univariate Cox regression analysis, the random survival forest algorithm, and the multivariate Cox regression analysis and utilized to establish a prognostic FRG signature. The validation results demonstrated that the gene signature has not only excellent prediction performance and generalization ability but is also good at predicting the response of immunotherapy and chemotherapy. Subsequent analysis indicated that all 3 key genes play key roles in tumor immunity and prognosis of ES. Of these, AURKA was highly associated with EWSR1, which was verified by a single-cell dataset (GSE130019). Therefore, the 3 genes may be potential therapeutic targets for ES. At the end of this study, we also constructed an accurate nomogram that helps clinicians to assess the survival time of ES patients. In conclusion, our study constructed an excellent gene signature, which is helpful in improving the prognosis of ES patients. Hindawi 2022-08-22 /pmc/articles/PMC9425108/ /pubmed/36050939 http://dx.doi.org/10.1155/2022/6711629 Text en Copyright © 2022 Runhan Zhao et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Zhao, Runhan
Li, Zefang
Huang, Yanran
Xiong, Chuang
Zhang, Chao
Liang, Hao
Xu, Jingtao
Luo, Xiaoji
A Novel Ferroptosis-Related Gene Signature for Prognosis Prediction in Ewing Sarcoma
title A Novel Ferroptosis-Related Gene Signature for Prognosis Prediction in Ewing Sarcoma
title_full A Novel Ferroptosis-Related Gene Signature for Prognosis Prediction in Ewing Sarcoma
title_fullStr A Novel Ferroptosis-Related Gene Signature for Prognosis Prediction in Ewing Sarcoma
title_full_unstemmed A Novel Ferroptosis-Related Gene Signature for Prognosis Prediction in Ewing Sarcoma
title_short A Novel Ferroptosis-Related Gene Signature for Prognosis Prediction in Ewing Sarcoma
title_sort novel ferroptosis-related gene signature for prognosis prediction in ewing sarcoma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9425108/
https://www.ncbi.nlm.nih.gov/pubmed/36050939
http://dx.doi.org/10.1155/2022/6711629
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