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Adiponectin/AdiopR1 signaling prevents mitochondrial dysfunction and oxidative injury after traumatic brain injury in a SIRT3 dependent manner

Mitochondrial dysfunction and oxidative injury, which contribute to worsening of neurological deficits and poor clinical outcomes, are hallmarks of secondary brain injury after TBI. Adiponectin (APN), beyond its well-established regulatory effects on metabolism, is also essential for maintaining nor...

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Autores principales: Zhang, Shenghao, Wu, Xun, Wang, Jin, Shi, Yingwu, Hu, Qing, Cui, Wenxing, Bai, Hao, Zhou, Jinpeng, Du, Yong, Han, Liying, Li, Leiyang, Feng, Dayun, Ge, Shunnan, Qu, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9287731/
https://www.ncbi.nlm.nih.gov/pubmed/35793583
http://dx.doi.org/10.1016/j.redox.2022.102390
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author Zhang, Shenghao
Wu, Xun
Wang, Jin
Shi, Yingwu
Hu, Qing
Cui, Wenxing
Bai, Hao
Zhou, Jinpeng
Du, Yong
Han, Liying
Li, Leiyang
Feng, Dayun
Ge, Shunnan
Qu, Yan
author_facet Zhang, Shenghao
Wu, Xun
Wang, Jin
Shi, Yingwu
Hu, Qing
Cui, Wenxing
Bai, Hao
Zhou, Jinpeng
Du, Yong
Han, Liying
Li, Leiyang
Feng, Dayun
Ge, Shunnan
Qu, Yan
author_sort Zhang, Shenghao
collection PubMed
description Mitochondrial dysfunction and oxidative injury, which contribute to worsening of neurological deficits and poor clinical outcomes, are hallmarks of secondary brain injury after TBI. Adiponectin (APN), beyond its well-established regulatory effects on metabolism, is also essential for maintaining normal brain functions by binding APN receptors that are ubiquitously expressed in the brain. Currently, the significance of the APN/APN receptor (AdipoR) signaling pathway in secondary injury after TBI and the specific mechanisms have not been conclusively determined. In this study, we found that APN knockout aggravated brain functional deficits, increased brain edema and lesion volume, and exacerbated oxidative stress as well as apoptosis after TBI. These effects were significantly alleviated after APN receptor agonist (AdipoRon) treatment. Moreover, we found that AdipoR1, rather than AdipoR2, mediated the protective effects of APN/AdipoR signaling against oxidative stress and brain injury after TBI. In neuron-specific AdipoR1 knockout mice, mitochondrial damage was more severe after TBI, indicating a potential association between APN/AdipoR1 signaling inactivation and mitochondrial damage. Mechanistically, neuron-specific knockout of SIRT3, the most important deacetylase in the mitochondria, reversed the neuroprotective effects of AdipoRon after TBI. Then, PRDX3, a critical antioxidant enzyme in the mitochondria, was identified as a vital downstream target of the APN/SIRT3 axis to alleviate oxidative injury after TBI. Finally, we revealed that APN/AdipoR1 signaling promotes SIRT3 transcription by activating the AMPK-PGC pathway. In conclusion, APN/AdipoR1 signaling plays a protective role in post-TBI oxidative damage by restoring the SIRT3-mediated mitochondrial homeostasis and antioxidant system.
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spelling pubmed-92877312022-07-17 Adiponectin/AdiopR1 signaling prevents mitochondrial dysfunction and oxidative injury after traumatic brain injury in a SIRT3 dependent manner Zhang, Shenghao Wu, Xun Wang, Jin Shi, Yingwu Hu, Qing Cui, Wenxing Bai, Hao Zhou, Jinpeng Du, Yong Han, Liying Li, Leiyang Feng, Dayun Ge, Shunnan Qu, Yan Redox Biol Research Paper Mitochondrial dysfunction and oxidative injury, which contribute to worsening of neurological deficits and poor clinical outcomes, are hallmarks of secondary brain injury after TBI. Adiponectin (APN), beyond its well-established regulatory effects on metabolism, is also essential for maintaining normal brain functions by binding APN receptors that are ubiquitously expressed in the brain. Currently, the significance of the APN/APN receptor (AdipoR) signaling pathway in secondary injury after TBI and the specific mechanisms have not been conclusively determined. In this study, we found that APN knockout aggravated brain functional deficits, increased brain edema and lesion volume, and exacerbated oxidative stress as well as apoptosis after TBI. These effects were significantly alleviated after APN receptor agonist (AdipoRon) treatment. Moreover, we found that AdipoR1, rather than AdipoR2, mediated the protective effects of APN/AdipoR signaling against oxidative stress and brain injury after TBI. In neuron-specific AdipoR1 knockout mice, mitochondrial damage was more severe after TBI, indicating a potential association between APN/AdipoR1 signaling inactivation and mitochondrial damage. Mechanistically, neuron-specific knockout of SIRT3, the most important deacetylase in the mitochondria, reversed the neuroprotective effects of AdipoRon after TBI. Then, PRDX3, a critical antioxidant enzyme in the mitochondria, was identified as a vital downstream target of the APN/SIRT3 axis to alleviate oxidative injury after TBI. Finally, we revealed that APN/AdipoR1 signaling promotes SIRT3 transcription by activating the AMPK-PGC pathway. In conclusion, APN/AdipoR1 signaling plays a protective role in post-TBI oxidative damage by restoring the SIRT3-mediated mitochondrial homeostasis and antioxidant system. Elsevier 2022-06-30 /pmc/articles/PMC9287731/ /pubmed/35793583 http://dx.doi.org/10.1016/j.redox.2022.102390 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Zhang, Shenghao
Wu, Xun
Wang, Jin
Shi, Yingwu
Hu, Qing
Cui, Wenxing
Bai, Hao
Zhou, Jinpeng
Du, Yong
Han, Liying
Li, Leiyang
Feng, Dayun
Ge, Shunnan
Qu, Yan
Adiponectin/AdiopR1 signaling prevents mitochondrial dysfunction and oxidative injury after traumatic brain injury in a SIRT3 dependent manner
title Adiponectin/AdiopR1 signaling prevents mitochondrial dysfunction and oxidative injury after traumatic brain injury in a SIRT3 dependent manner
title_full Adiponectin/AdiopR1 signaling prevents mitochondrial dysfunction and oxidative injury after traumatic brain injury in a SIRT3 dependent manner
title_fullStr Adiponectin/AdiopR1 signaling prevents mitochondrial dysfunction and oxidative injury after traumatic brain injury in a SIRT3 dependent manner
title_full_unstemmed Adiponectin/AdiopR1 signaling prevents mitochondrial dysfunction and oxidative injury after traumatic brain injury in a SIRT3 dependent manner
title_short Adiponectin/AdiopR1 signaling prevents mitochondrial dysfunction and oxidative injury after traumatic brain injury in a SIRT3 dependent manner
title_sort adiponectin/adiopr1 signaling prevents mitochondrial dysfunction and oxidative injury after traumatic brain injury in a sirt3 dependent manner
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9287731/
https://www.ncbi.nlm.nih.gov/pubmed/35793583
http://dx.doi.org/10.1016/j.redox.2022.102390
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