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ATM Deficiency Accelerates DNA Damage, Telomere Erosion, and Premature T Cell Aging in HIV-Infected Individuals on Antiretroviral Therapy

HIV infection leads to a phenomenon of inflammaging, in which chronic inflammation induces an immune aged phenotype, even in individuals on combined antiretroviral therapy (cART) with undetectable viremia. In this study, we investigated T cell homeostasis and telomeric DNA damage and repair machiner...

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Autores principales: Zhao, Juan, Nguyen, Lam Ngoc Thao, Nguyen, Lam Nhat, Dang, Xindi, Cao, Dechao, Khanal, Sushant, Schank, Madison, Thakuri, Bal Krishna Chand, Ogbu, Stella C., Morrison, Zheng D., Wu, Xiao Y., Li, Zhengke, Zou, Yue, El Gazzar, Mohamed, Ning, Shunbin, Wang, Ling, Moorman, Jonathan P., Yao, Zhi Q.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6856652/
https://www.ncbi.nlm.nih.gov/pubmed/31781094
http://dx.doi.org/10.3389/fimmu.2019.02531
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author Zhao, Juan
Nguyen, Lam Ngoc Thao
Nguyen, Lam Nhat
Dang, Xindi
Cao, Dechao
Khanal, Sushant
Schank, Madison
Thakuri, Bal Krishna Chand
Ogbu, Stella C.
Morrison, Zheng D.
Wu, Xiao Y.
Li, Zhengke
Zou, Yue
El Gazzar, Mohamed
Ning, Shunbin
Wang, Ling
Moorman, Jonathan P.
Yao, Zhi Q.
author_facet Zhao, Juan
Nguyen, Lam Ngoc Thao
Nguyen, Lam Nhat
Dang, Xindi
Cao, Dechao
Khanal, Sushant
Schank, Madison
Thakuri, Bal Krishna Chand
Ogbu, Stella C.
Morrison, Zheng D.
Wu, Xiao Y.
Li, Zhengke
Zou, Yue
El Gazzar, Mohamed
Ning, Shunbin
Wang, Ling
Moorman, Jonathan P.
Yao, Zhi Q.
author_sort Zhao, Juan
collection PubMed
description HIV infection leads to a phenomenon of inflammaging, in which chronic inflammation induces an immune aged phenotype, even in individuals on combined antiretroviral therapy (cART) with undetectable viremia. In this study, we investigated T cell homeostasis and telomeric DNA damage and repair machineries in cART-controlled HIV patients at risk for inflammaging. We found a significant depletion of CD4 T cells, which was inversely correlated with the cell apoptosis in virus-suppressed HIV subjects compared to age-matched healthy subjects (HS). In addition, HIV CD4 T cells were prone to DNA damage that extended to chromosome ends—telomeres, leading to accelerated telomere erosion—a hallmark of cell senescence. Mechanistically, the DNA double-strand break (DSB) sensors MRE11, RAD50, and NBS1 (MRN complex) remained intact, but both expression and activity of the DNA damage checkpoint kinase ataxia-telangiectasia mutated (ATM) and its downstream checkpoint kinase 2 (CHK2) were significantly suppressed in HIV CD4 T cells. Consistently, ATM/CHK2 activation, DNA repair, and cellular functions were also impaired in healthy CD4 T cells following ATM knockdown or exposure to the ATM inhibitor KU60019 in vitro, recapitulating the biological effects observed in HIV-derived CD4 T cells in vivo. Importantly, ectopic expression of ATM was essential and sufficient to reduce the DNA damage, apoptosis, and cellular dysfunction in HIV-derived CD4 T cells. These results demonstrate that failure of DSB repair due to ATM deficiency leads to increased DNA damage and renders CD4 T cells prone to senescence and apoptotic death, contributing to CD4 T cell depletion or dysfunction in cART-controlled, latent HIV infection.
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spelling pubmed-68566522019-11-28 ATM Deficiency Accelerates DNA Damage, Telomere Erosion, and Premature T Cell Aging in HIV-Infected Individuals on Antiretroviral Therapy Zhao, Juan Nguyen, Lam Ngoc Thao Nguyen, Lam Nhat Dang, Xindi Cao, Dechao Khanal, Sushant Schank, Madison Thakuri, Bal Krishna Chand Ogbu, Stella C. Morrison, Zheng D. Wu, Xiao Y. Li, Zhengke Zou, Yue El Gazzar, Mohamed Ning, Shunbin Wang, Ling Moorman, Jonathan P. Yao, Zhi Q. Front Immunol Immunology HIV infection leads to a phenomenon of inflammaging, in which chronic inflammation induces an immune aged phenotype, even in individuals on combined antiretroviral therapy (cART) with undetectable viremia. In this study, we investigated T cell homeostasis and telomeric DNA damage and repair machineries in cART-controlled HIV patients at risk for inflammaging. We found a significant depletion of CD4 T cells, which was inversely correlated with the cell apoptosis in virus-suppressed HIV subjects compared to age-matched healthy subjects (HS). In addition, HIV CD4 T cells were prone to DNA damage that extended to chromosome ends—telomeres, leading to accelerated telomere erosion—a hallmark of cell senescence. Mechanistically, the DNA double-strand break (DSB) sensors MRE11, RAD50, and NBS1 (MRN complex) remained intact, but both expression and activity of the DNA damage checkpoint kinase ataxia-telangiectasia mutated (ATM) and its downstream checkpoint kinase 2 (CHK2) were significantly suppressed in HIV CD4 T cells. Consistently, ATM/CHK2 activation, DNA repair, and cellular functions were also impaired in healthy CD4 T cells following ATM knockdown or exposure to the ATM inhibitor KU60019 in vitro, recapitulating the biological effects observed in HIV-derived CD4 T cells in vivo. Importantly, ectopic expression of ATM was essential and sufficient to reduce the DNA damage, apoptosis, and cellular dysfunction in HIV-derived CD4 T cells. These results demonstrate that failure of DSB repair due to ATM deficiency leads to increased DNA damage and renders CD4 T cells prone to senescence and apoptotic death, contributing to CD4 T cell depletion or dysfunction in cART-controlled, latent HIV infection. Frontiers Media S.A. 2019-11-05 /pmc/articles/PMC6856652/ /pubmed/31781094 http://dx.doi.org/10.3389/fimmu.2019.02531 Text en Copyright © 2019 Zhao, Nguyen, Nguyen, Dang, Cao, Khanal, Schank, Thakuri, Ogbu, Morrison, Wu, Li, Zou, El Gazzar, Ning, Wang, Moorman and Yao. http://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
Zhao, Juan
Nguyen, Lam Ngoc Thao
Nguyen, Lam Nhat
Dang, Xindi
Cao, Dechao
Khanal, Sushant
Schank, Madison
Thakuri, Bal Krishna Chand
Ogbu, Stella C.
Morrison, Zheng D.
Wu, Xiao Y.
Li, Zhengke
Zou, Yue
El Gazzar, Mohamed
Ning, Shunbin
Wang, Ling
Moorman, Jonathan P.
Yao, Zhi Q.
ATM Deficiency Accelerates DNA Damage, Telomere Erosion, and Premature T Cell Aging in HIV-Infected Individuals on Antiretroviral Therapy
title ATM Deficiency Accelerates DNA Damage, Telomere Erosion, and Premature T Cell Aging in HIV-Infected Individuals on Antiretroviral Therapy
title_full ATM Deficiency Accelerates DNA Damage, Telomere Erosion, and Premature T Cell Aging in HIV-Infected Individuals on Antiretroviral Therapy
title_fullStr ATM Deficiency Accelerates DNA Damage, Telomere Erosion, and Premature T Cell Aging in HIV-Infected Individuals on Antiretroviral Therapy
title_full_unstemmed ATM Deficiency Accelerates DNA Damage, Telomere Erosion, and Premature T Cell Aging in HIV-Infected Individuals on Antiretroviral Therapy
title_short ATM Deficiency Accelerates DNA Damage, Telomere Erosion, and Premature T Cell Aging in HIV-Infected Individuals on Antiretroviral Therapy
title_sort atm deficiency accelerates dna damage, telomere erosion, and premature t cell aging in hiv-infected individuals on antiretroviral therapy
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6856652/
https://www.ncbi.nlm.nih.gov/pubmed/31781094
http://dx.doi.org/10.3389/fimmu.2019.02531
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