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Cytosolic Release of Mitochondrial DNA and Associated cGAS Signaling Mediates Radiation-Induced Hematopoietic Injury of Mice

Mitochondrion is an important organelle of eukaryotic cells and a critical target of ionizing radiation (IR) outside the nucleus. The biological significance and mechanism of the non-target effect originating from mitochondria have received much attention in the field of radiation biology and protec...

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Autores principales: Guan, Hua, Zhang, Wen, Xie, Dafei, Nie, Yuehua, Chen, Shi, Sun, Xiaoya, Zhao, Hongling, Liu, Xiaochang, Wang, Hua, Huang, Xin, Bai, Chenjun, Huang, Bo, Zhou, Pingkun, Gao, Shanshan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9960871/
https://www.ncbi.nlm.nih.gov/pubmed/36835431
http://dx.doi.org/10.3390/ijms24044020
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author Guan, Hua
Zhang, Wen
Xie, Dafei
Nie, Yuehua
Chen, Shi
Sun, Xiaoya
Zhao, Hongling
Liu, Xiaochang
Wang, Hua
Huang, Xin
Bai, Chenjun
Huang, Bo
Zhou, Pingkun
Gao, Shanshan
author_facet Guan, Hua
Zhang, Wen
Xie, Dafei
Nie, Yuehua
Chen, Shi
Sun, Xiaoya
Zhao, Hongling
Liu, Xiaochang
Wang, Hua
Huang, Xin
Bai, Chenjun
Huang, Bo
Zhou, Pingkun
Gao, Shanshan
author_sort Guan, Hua
collection PubMed
description Mitochondrion is an important organelle of eukaryotic cells and a critical target of ionizing radiation (IR) outside the nucleus. The biological significance and mechanism of the non-target effect originating from mitochondria have received much attention in the field of radiation biology and protection. In this study, we investigated the effect, role, and radioprotective significance of cytosolic mitochondrial DNA (mtDNA) and its associated cGAS signaling on hematopoietic injury induced by IR in vitro culture cells and in vivo total body irradiated mice in this study. The results demonstrated that γ-ray exposure increases the release of mtDNA into the cytosol to activate cGAS signaling pathway, and the voltage-dependent anion channel (VDAC) may contribute to IR-induced mtDNA release. VDAC1 inhibitor DIDS and cGAS synthetase inhibitor can alleviate bone marrow injury and ameliorate hematopoietic suppression induced by IR via protecting hematopoietic stem cells and adjusting subtype distribution of bone marrow cells, such as attenuating the increase of the F4/80(+) macrophage proportion in bone marrow cells. The present study provides a new mechanistic explanation for the radiation non-target effect and an alternative technical strategy for the prevention and treatment of hematopoietic acute radiation syndrome.
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spelling pubmed-99608712023-02-26 Cytosolic Release of Mitochondrial DNA and Associated cGAS Signaling Mediates Radiation-Induced Hematopoietic Injury of Mice Guan, Hua Zhang, Wen Xie, Dafei Nie, Yuehua Chen, Shi Sun, Xiaoya Zhao, Hongling Liu, Xiaochang Wang, Hua Huang, Xin Bai, Chenjun Huang, Bo Zhou, Pingkun Gao, Shanshan Int J Mol Sci Article Mitochondrion is an important organelle of eukaryotic cells and a critical target of ionizing radiation (IR) outside the nucleus. The biological significance and mechanism of the non-target effect originating from mitochondria have received much attention in the field of radiation biology and protection. In this study, we investigated the effect, role, and radioprotective significance of cytosolic mitochondrial DNA (mtDNA) and its associated cGAS signaling on hematopoietic injury induced by IR in vitro culture cells and in vivo total body irradiated mice in this study. The results demonstrated that γ-ray exposure increases the release of mtDNA into the cytosol to activate cGAS signaling pathway, and the voltage-dependent anion channel (VDAC) may contribute to IR-induced mtDNA release. VDAC1 inhibitor DIDS and cGAS synthetase inhibitor can alleviate bone marrow injury and ameliorate hematopoietic suppression induced by IR via protecting hematopoietic stem cells and adjusting subtype distribution of bone marrow cells, such as attenuating the increase of the F4/80(+) macrophage proportion in bone marrow cells. The present study provides a new mechanistic explanation for the radiation non-target effect and an alternative technical strategy for the prevention and treatment of hematopoietic acute radiation syndrome. MDPI 2023-02-16 /pmc/articles/PMC9960871/ /pubmed/36835431 http://dx.doi.org/10.3390/ijms24044020 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Guan, Hua
Zhang, Wen
Xie, Dafei
Nie, Yuehua
Chen, Shi
Sun, Xiaoya
Zhao, Hongling
Liu, Xiaochang
Wang, Hua
Huang, Xin
Bai, Chenjun
Huang, Bo
Zhou, Pingkun
Gao, Shanshan
Cytosolic Release of Mitochondrial DNA and Associated cGAS Signaling Mediates Radiation-Induced Hematopoietic Injury of Mice
title Cytosolic Release of Mitochondrial DNA and Associated cGAS Signaling Mediates Radiation-Induced Hematopoietic Injury of Mice
title_full Cytosolic Release of Mitochondrial DNA and Associated cGAS Signaling Mediates Radiation-Induced Hematopoietic Injury of Mice
title_fullStr Cytosolic Release of Mitochondrial DNA and Associated cGAS Signaling Mediates Radiation-Induced Hematopoietic Injury of Mice
title_full_unstemmed Cytosolic Release of Mitochondrial DNA and Associated cGAS Signaling Mediates Radiation-Induced Hematopoietic Injury of Mice
title_short Cytosolic Release of Mitochondrial DNA and Associated cGAS Signaling Mediates Radiation-Induced Hematopoietic Injury of Mice
title_sort cytosolic release of mitochondrial dna and associated cgas signaling mediates radiation-induced hematopoietic injury of mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9960871/
https://www.ncbi.nlm.nih.gov/pubmed/36835431
http://dx.doi.org/10.3390/ijms24044020
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