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N6-methyladenosine regulators-related immune genes enable predict graft loss and discriminate T-cell mediate rejection in kidney transplantation biopsies for cause

OBJECTIVE: The role of m6A modification in kidney transplant-associated immunity, especially in alloimmunity, still remains unknown. This study aims to explore the potential value of m6A-related immune genes in predicting graft loss and diagnosing T cell mediated rejection (TCMR), as well as the pos...

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Autores principales: Pang, Qidan, Chen, Hong, Wu, Hang, Wang, Yong, An, Changyong, Lai, Suhe, Xu, Jia, Wang, Ruiqiong, Zhou, Juan, Xiao, Hanyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9722771/
https://www.ncbi.nlm.nih.gov/pubmed/36483557
http://dx.doi.org/10.3389/fimmu.2022.1039013
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author Pang, Qidan
Chen, Hong
Wu, Hang
Wang, Yong
An, Changyong
Lai, Suhe
Xu, Jia
Wang, Ruiqiong
Zhou, Juan
Xiao, Hanyu
author_facet Pang, Qidan
Chen, Hong
Wu, Hang
Wang, Yong
An, Changyong
Lai, Suhe
Xu, Jia
Wang, Ruiqiong
Zhou, Juan
Xiao, Hanyu
author_sort Pang, Qidan
collection PubMed
description OBJECTIVE: The role of m6A modification in kidney transplant-associated immunity, especially in alloimmunity, still remains unknown. This study aims to explore the potential value of m6A-related immune genes in predicting graft loss and diagnosing T cell mediated rejection (TCMR), as well as the possible role they play in renal graft dysfunction. METHODS: Renal transplant-related cohorts and transcript expression data were obtained from the GEO database. First, we conducted correlation analysis in the discovery cohort to identify the m6A-related immune genes. Then, lasso regression and random forest were used respectively to build prediction models in the prognosis and diagnosis cohort, to predict graft loss and discriminate TCMR in dysfunctional renal grafts. Connectivity map (CMap) analysis was applied to identify potential therapeutic compounds for TCMR. RESULTS: The prognostic prediction model effectively predicts the prognosis and survival of renal grafts with clinical indications (P< 0.001) and applies to both rejection and non-rejection situations. The diagnostic prediction model discriminates TCMR in dysfunctional renal grafts with high accuracy (area under curve = 0.891). Meanwhile, the classifier score of the diagnostic model, as a continuity index, is positively correlated with the severity of main pathological injuries of TCMR. Furthermore, it is found that METTL3, FTO, WATP, and RBM15 are likely to play a pivotal part in the regulation of immune response in TCMR. By CMap analysis, several small molecular compounds are found to be able to reverse TCMR including fenoldopam, dextromethorphan, and so on. CONCLUSIONS: Together, our findings explore the value of m6A-related immune genes in predicting the prognosis of renal grafts and diagnosis of TCMR.
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spelling pubmed-97227712022-12-07 N6-methyladenosine regulators-related immune genes enable predict graft loss and discriminate T-cell mediate rejection in kidney transplantation biopsies for cause Pang, Qidan Chen, Hong Wu, Hang Wang, Yong An, Changyong Lai, Suhe Xu, Jia Wang, Ruiqiong Zhou, Juan Xiao, Hanyu Front Immunol Immunology OBJECTIVE: The role of m6A modification in kidney transplant-associated immunity, especially in alloimmunity, still remains unknown. This study aims to explore the potential value of m6A-related immune genes in predicting graft loss and diagnosing T cell mediated rejection (TCMR), as well as the possible role they play in renal graft dysfunction. METHODS: Renal transplant-related cohorts and transcript expression data were obtained from the GEO database. First, we conducted correlation analysis in the discovery cohort to identify the m6A-related immune genes. Then, lasso regression and random forest were used respectively to build prediction models in the prognosis and diagnosis cohort, to predict graft loss and discriminate TCMR in dysfunctional renal grafts. Connectivity map (CMap) analysis was applied to identify potential therapeutic compounds for TCMR. RESULTS: The prognostic prediction model effectively predicts the prognosis and survival of renal grafts with clinical indications (P< 0.001) and applies to both rejection and non-rejection situations. The diagnostic prediction model discriminates TCMR in dysfunctional renal grafts with high accuracy (area under curve = 0.891). Meanwhile, the classifier score of the diagnostic model, as a continuity index, is positively correlated with the severity of main pathological injuries of TCMR. Furthermore, it is found that METTL3, FTO, WATP, and RBM15 are likely to play a pivotal part in the regulation of immune response in TCMR. By CMap analysis, several small molecular compounds are found to be able to reverse TCMR including fenoldopam, dextromethorphan, and so on. CONCLUSIONS: Together, our findings explore the value of m6A-related immune genes in predicting the prognosis of renal grafts and diagnosis of TCMR. Frontiers Media S.A. 2022-11-22 /pmc/articles/PMC9722771/ /pubmed/36483557 http://dx.doi.org/10.3389/fimmu.2022.1039013 Text en Copyright © 2022 Pang, Chen, Wu, Wang, An, Lai, Xu, Wang, Zhou and Xiao 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
Pang, Qidan
Chen, Hong
Wu, Hang
Wang, Yong
An, Changyong
Lai, Suhe
Xu, Jia
Wang, Ruiqiong
Zhou, Juan
Xiao, Hanyu
N6-methyladenosine regulators-related immune genes enable predict graft loss and discriminate T-cell mediate rejection in kidney transplantation biopsies for cause
title N6-methyladenosine regulators-related immune genes enable predict graft loss and discriminate T-cell mediate rejection in kidney transplantation biopsies for cause
title_full N6-methyladenosine regulators-related immune genes enable predict graft loss and discriminate T-cell mediate rejection in kidney transplantation biopsies for cause
title_fullStr N6-methyladenosine regulators-related immune genes enable predict graft loss and discriminate T-cell mediate rejection in kidney transplantation biopsies for cause
title_full_unstemmed N6-methyladenosine regulators-related immune genes enable predict graft loss and discriminate T-cell mediate rejection in kidney transplantation biopsies for cause
title_short N6-methyladenosine regulators-related immune genes enable predict graft loss and discriminate T-cell mediate rejection in kidney transplantation biopsies for cause
title_sort n6-methyladenosine regulators-related immune genes enable predict graft loss and discriminate t-cell mediate rejection in kidney transplantation biopsies for cause
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9722771/
https://www.ncbi.nlm.nih.gov/pubmed/36483557
http://dx.doi.org/10.3389/fimmu.2022.1039013
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