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DNA methylation modulates allograft survival and acute rejection after renal transplantation by regulating the mTOR pathway

Acute rejection (AR) can lead to allograft dysfunction following renal transplantation, despite immunosuppressive treatments. Accumulating evidence points out a role for epigenetic modification in immune responses. However, the mechanism and contribution of DNA methylation in allograft survival rema...

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Autores principales: Zhu, Chaohong, Xiang, Wenyu, Li, Bingjue, Wang, Yucheng, Feng, Shi, Wang, Cuili, Chen, Ying, Xie, Wenqing, Qu, Lihui, Huang, Hongfeng, Annunziata, Francesco, Nunna, Suneetha, Krepelova, Anna, Mohammad M. Rasa, Seyed, Neri, Francesco, Chen, Jianghua, Jiang, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7891393/
http://dx.doi.org/10.1111/ajt.16183
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author Zhu, Chaohong
Xiang, Wenyu
Li, Bingjue
Wang, Yucheng
Feng, Shi
Wang, Cuili
Chen, Ying
Xie, Wenqing
Qu, Lihui
Huang, Hongfeng
Annunziata, Francesco
Nunna, Suneetha
Krepelova, Anna
Mohammad M. Rasa, Seyed
Neri, Francesco
Chen, Jianghua
Jiang, Hong
author_facet Zhu, Chaohong
Xiang, Wenyu
Li, Bingjue
Wang, Yucheng
Feng, Shi
Wang, Cuili
Chen, Ying
Xie, Wenqing
Qu, Lihui
Huang, Hongfeng
Annunziata, Francesco
Nunna, Suneetha
Krepelova, Anna
Mohammad M. Rasa, Seyed
Neri, Francesco
Chen, Jianghua
Jiang, Hong
author_sort Zhu, Chaohong
collection PubMed
description Acute rejection (AR) can lead to allograft dysfunction following renal transplantation, despite immunosuppressive treatments. Accumulating evidence points out a role for epigenetic modification in immune responses. However, the mechanism and contribution of DNA methylation in allograft survival remain unclear. In this study, we followed up patients who successively experienced end‐stage renal disease, renal transplantation with allograft function or dysfunction, and hemodialysis. Peripheral blood mononuclear cells were collected at different time points for analysis of the DNA methylation. Epigenetic modifier analysis was also performed to explore its effect of methylation in a mouse model of AR. Compared with the allograft‐stable cohort, patients who experienced AR‐induced allograft dysfunction demonstrated more changes in methylation patterns. Pathway analysis revealed that the hypermethylated areas in the allograft dysfunction group were associated with genes related to the mechanistic target of rapamycin (mTOR) signaling pathway. Moreover, in the mouse AR model, treatment with the DNA methyltransferase inhibitor—decitabine regulated the Th1/2/17/regulatory T cell (Treg cell) immune response via its demethylating role in the suppressing the activity of the mTOR pathway, which ultimately ameliorated renal allograft‐related inflammatory injuries. These results revealed that changes in methylation accompany AR‐induced allograft dysfunction after renal transplantation. Epigenetics may provide new insights into predicting and improving allograft survival.
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spelling pubmed-78913932021-03-02 DNA methylation modulates allograft survival and acute rejection after renal transplantation by regulating the mTOR pathway Zhu, Chaohong Xiang, Wenyu Li, Bingjue Wang, Yucheng Feng, Shi Wang, Cuili Chen, Ying Xie, Wenqing Qu, Lihui Huang, Hongfeng Annunziata, Francesco Nunna, Suneetha Krepelova, Anna Mohammad M. Rasa, Seyed Neri, Francesco Chen, Jianghua Jiang, Hong Am J Transplant ORIGINAL ARTICLES Acute rejection (AR) can lead to allograft dysfunction following renal transplantation, despite immunosuppressive treatments. Accumulating evidence points out a role for epigenetic modification in immune responses. However, the mechanism and contribution of DNA methylation in allograft survival remain unclear. In this study, we followed up patients who successively experienced end‐stage renal disease, renal transplantation with allograft function or dysfunction, and hemodialysis. Peripheral blood mononuclear cells were collected at different time points for analysis of the DNA methylation. Epigenetic modifier analysis was also performed to explore its effect of methylation in a mouse model of AR. Compared with the allograft‐stable cohort, patients who experienced AR‐induced allograft dysfunction demonstrated more changes in methylation patterns. Pathway analysis revealed that the hypermethylated areas in the allograft dysfunction group were associated with genes related to the mechanistic target of rapamycin (mTOR) signaling pathway. Moreover, in the mouse AR model, treatment with the DNA methyltransferase inhibitor—decitabine regulated the Th1/2/17/regulatory T cell (Treg cell) immune response via its demethylating role in the suppressing the activity of the mTOR pathway, which ultimately ameliorated renal allograft‐related inflammatory injuries. These results revealed that changes in methylation accompany AR‐induced allograft dysfunction after renal transplantation. Epigenetics may provide new insights into predicting and improving allograft survival. John Wiley and Sons Inc. 2020-07-24 2021-02 /pmc/articles/PMC7891393/ http://dx.doi.org/10.1111/ajt.16183 Text en © 2020 The Authors. American Journal of Transplantation published by Wiley Periodicals LLC on behalf of The American Society of Transplantation and the American Society of Transplant Surgeons This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle ORIGINAL ARTICLES
Zhu, Chaohong
Xiang, Wenyu
Li, Bingjue
Wang, Yucheng
Feng, Shi
Wang, Cuili
Chen, Ying
Xie, Wenqing
Qu, Lihui
Huang, Hongfeng
Annunziata, Francesco
Nunna, Suneetha
Krepelova, Anna
Mohammad M. Rasa, Seyed
Neri, Francesco
Chen, Jianghua
Jiang, Hong
DNA methylation modulates allograft survival and acute rejection after renal transplantation by regulating the mTOR pathway
title DNA methylation modulates allograft survival and acute rejection after renal transplantation by regulating the mTOR pathway
title_full DNA methylation modulates allograft survival and acute rejection after renal transplantation by regulating the mTOR pathway
title_fullStr DNA methylation modulates allograft survival and acute rejection after renal transplantation by regulating the mTOR pathway
title_full_unstemmed DNA methylation modulates allograft survival and acute rejection after renal transplantation by regulating the mTOR pathway
title_short DNA methylation modulates allograft survival and acute rejection after renal transplantation by regulating the mTOR pathway
title_sort dna methylation modulates allograft survival and acute rejection after renal transplantation by regulating the mtor pathway
topic ORIGINAL ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7891393/
http://dx.doi.org/10.1111/ajt.16183
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