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Crosstalk of necroptosis and pyroptosis defines tumor microenvironment characterization and predicts prognosis in clear cell renal carcinoma

Pyroptosis and necroptosis are two recently identified forms of immunogenic cell death in the tumor microenvironment (TME), indicating a crucial involvement in tumor metastasis. However, the characteristics of necroptosis and pyroptosis that define tumor microenvironment and prognosis in ccRCC patie...

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Autores principales: Fu, Liangmin, Bao, Jiahao, Li, Jinhui, Li, Qiuyang, Lin, Hansen, Zhou, Yayun, Li, Jiangbo, Yan, Yixuan, Langston, Marvin E., Sun, Tianhao, Guo, Songliang, Zhou, Xinwei, Chen, Yuhang, Liu, Yujun, Zhao, Yiqi, Lu, Jun, Huang, Yong, Chen, Wei, Chung, Benjamin I., Luo, Junhang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9561249/
https://www.ncbi.nlm.nih.gov/pubmed/36248876
http://dx.doi.org/10.3389/fimmu.2022.1021935
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author Fu, Liangmin
Bao, Jiahao
Li, Jinhui
Li, Qiuyang
Lin, Hansen
Zhou, Yayun
Li, Jiangbo
Yan, Yixuan
Langston, Marvin E.
Sun, Tianhao
Guo, Songliang
Zhou, Xinwei
Chen, Yuhang
Liu, Yujun
Zhao, Yiqi
Lu, Jun
Huang, Yong
Chen, Wei
Chung, Benjamin I.
Luo, Junhang
author_facet Fu, Liangmin
Bao, Jiahao
Li, Jinhui
Li, Qiuyang
Lin, Hansen
Zhou, Yayun
Li, Jiangbo
Yan, Yixuan
Langston, Marvin E.
Sun, Tianhao
Guo, Songliang
Zhou, Xinwei
Chen, Yuhang
Liu, Yujun
Zhao, Yiqi
Lu, Jun
Huang, Yong
Chen, Wei
Chung, Benjamin I.
Luo, Junhang
author_sort Fu, Liangmin
collection PubMed
description Pyroptosis and necroptosis are two recently identified forms of immunogenic cell death in the tumor microenvironment (TME), indicating a crucial involvement in tumor metastasis. However, the characteristics of necroptosis and pyroptosis that define tumor microenvironment and prognosis in ccRCC patients remain unknown. We systematically investigated the transcriptional variation and expression patterns of Necroptosis and Pyroptosis related genes (NPRGs). After screening the necroptosis-pyroptosis clusters, the potential functional annotation for clusters was explored by GSVA enrichment analysis. The Necroptosis-Pyroptosis Genes (NPG) scores were used for the prognosis model construction and validation. Then, the correlations of NPG score with clinical features, cancer stem cell (CSC) index, tumor mutation burden (TMB), TME, and Immune Checkpoint Genes (ICGs) were also individually explored to evaluate the prognosis predictive values in ccRCC. Microarray screenings identified 27 upregulated and 1 downregulated NPRGs. Ten overall survival associated NPRGs were filtered to construct the NPG prognostic model indicating a better prognostic signature for ccRCC patients with lower NPG scores (P< 0.001), which was verified using the external cohort. Univariate and multivariate analyses along with Kaplan-Meier survival analysis demonstrated that NPG score prognostic model could be applied as an independent prognostic factor, and AUC values of nomogram from 1- to 5- year overall survival with good agreement in calibration plots suggested that the proposed prognostic signature possessed good predictive capabilities in ccRCC. A high-/sNPG score is proven to be connected with tumor growth and immune-related biological processes, according to enriched GO, KEGG, and GSEA analyses. Comparing patients with a high-NPG score to those with a low-NPG score revealed significant differences in clinical characteristics, growth and recurrence of malignancies (CSC index), TME cell infiltration, and immunotherapeutic response (P< 0.005), potentially making the NPG score multifunctional in the clinical therapeutic setting. Furthermore, AIM2, CASP4, GSDMB, NOD2, and RBCK1 were also found to be highly expressed in ccRCC cell lines and tumor tissues, and GASP4 and GSDMB promote ccRCC cells’ proliferation, migration, and invasion. This study firstly suggests that targeting the NPG score feature for TME characterization may lend novel insights into its clinical applications in the prognostic prediction of ccRCC.
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spelling pubmed-95612492022-10-15 Crosstalk of necroptosis and pyroptosis defines tumor microenvironment characterization and predicts prognosis in clear cell renal carcinoma Fu, Liangmin Bao, Jiahao Li, Jinhui Li, Qiuyang Lin, Hansen Zhou, Yayun Li, Jiangbo Yan, Yixuan Langston, Marvin E. Sun, Tianhao Guo, Songliang Zhou, Xinwei Chen, Yuhang Liu, Yujun Zhao, Yiqi Lu, Jun Huang, Yong Chen, Wei Chung, Benjamin I. Luo, Junhang Front Immunol Immunology Pyroptosis and necroptosis are two recently identified forms of immunogenic cell death in the tumor microenvironment (TME), indicating a crucial involvement in tumor metastasis. However, the characteristics of necroptosis and pyroptosis that define tumor microenvironment and prognosis in ccRCC patients remain unknown. We systematically investigated the transcriptional variation and expression patterns of Necroptosis and Pyroptosis related genes (NPRGs). After screening the necroptosis-pyroptosis clusters, the potential functional annotation for clusters was explored by GSVA enrichment analysis. The Necroptosis-Pyroptosis Genes (NPG) scores were used for the prognosis model construction and validation. Then, the correlations of NPG score with clinical features, cancer stem cell (CSC) index, tumor mutation burden (TMB), TME, and Immune Checkpoint Genes (ICGs) were also individually explored to evaluate the prognosis predictive values in ccRCC. Microarray screenings identified 27 upregulated and 1 downregulated NPRGs. Ten overall survival associated NPRGs were filtered to construct the NPG prognostic model indicating a better prognostic signature for ccRCC patients with lower NPG scores (P< 0.001), which was verified using the external cohort. Univariate and multivariate analyses along with Kaplan-Meier survival analysis demonstrated that NPG score prognostic model could be applied as an independent prognostic factor, and AUC values of nomogram from 1- to 5- year overall survival with good agreement in calibration plots suggested that the proposed prognostic signature possessed good predictive capabilities in ccRCC. A high-/sNPG score is proven to be connected with tumor growth and immune-related biological processes, according to enriched GO, KEGG, and GSEA analyses. Comparing patients with a high-NPG score to those with a low-NPG score revealed significant differences in clinical characteristics, growth and recurrence of malignancies (CSC index), TME cell infiltration, and immunotherapeutic response (P< 0.005), potentially making the NPG score multifunctional in the clinical therapeutic setting. Furthermore, AIM2, CASP4, GSDMB, NOD2, and RBCK1 were also found to be highly expressed in ccRCC cell lines and tumor tissues, and GASP4 and GSDMB promote ccRCC cells’ proliferation, migration, and invasion. This study firstly suggests that targeting the NPG score feature for TME characterization may lend novel insights into its clinical applications in the prognostic prediction of ccRCC. Frontiers Media S.A. 2022-09-30 /pmc/articles/PMC9561249/ /pubmed/36248876 http://dx.doi.org/10.3389/fimmu.2022.1021935 Text en Copyright © 2022 Fu, Bao, Li, Li, Lin, Zhou, Li, Yan, Langston, Sun, Guo, Zhou, Chen, Liu, Zhao, Lu, Huang, Chen, Chung and Luo https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Fu, Liangmin
Bao, Jiahao
Li, Jinhui
Li, Qiuyang
Lin, Hansen
Zhou, Yayun
Li, Jiangbo
Yan, Yixuan
Langston, Marvin E.
Sun, Tianhao
Guo, Songliang
Zhou, Xinwei
Chen, Yuhang
Liu, Yujun
Zhao, Yiqi
Lu, Jun
Huang, Yong
Chen, Wei
Chung, Benjamin I.
Luo, Junhang
Crosstalk of necroptosis and pyroptosis defines tumor microenvironment characterization and predicts prognosis in clear cell renal carcinoma
title Crosstalk of necroptosis and pyroptosis defines tumor microenvironment characterization and predicts prognosis in clear cell renal carcinoma
title_full Crosstalk of necroptosis and pyroptosis defines tumor microenvironment characterization and predicts prognosis in clear cell renal carcinoma
title_fullStr Crosstalk of necroptosis and pyroptosis defines tumor microenvironment characterization and predicts prognosis in clear cell renal carcinoma
title_full_unstemmed Crosstalk of necroptosis and pyroptosis defines tumor microenvironment characterization and predicts prognosis in clear cell renal carcinoma
title_short Crosstalk of necroptosis and pyroptosis defines tumor microenvironment characterization and predicts prognosis in clear cell renal carcinoma
title_sort crosstalk of necroptosis and pyroptosis defines tumor microenvironment characterization and predicts prognosis in clear cell renal carcinoma
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9561249/
https://www.ncbi.nlm.nih.gov/pubmed/36248876
http://dx.doi.org/10.3389/fimmu.2022.1021935
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