Cargando…

Cysteine protease cathepsin B mediates radiation-induced bystander effects

Radiation-induced bystander effects (RIBE) refer to a unique process, in which factors released by irradiated cells or tissues exert effects on other parts of the animal not exposed to radiation, causing genomic instability, stress responses, and altered apoptosis or cell proliferation(1–3). Despite...

Descripción completa

Detalles Bibliográficos
Autores principales: Peng, Yu, Zhang, Man, Zheng, Lingjun, Liang, Qian, Li, Hanzeng, Chen, Jeng-Ting, Guo, Hongyan, Yoshina, Sawako, Chen, Yu-Zen, Zhao, Xiang, Wu, Xiaoqi, Liu, Bin, Mitani, Shohei, Yu, Jau-Song, Xue, Ding
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5892829/
https://www.ncbi.nlm.nih.gov/pubmed/28723894
http://dx.doi.org/10.1038/nature23284
_version_ 1783313217272938496
author Peng, Yu
Zhang, Man
Zheng, Lingjun
Liang, Qian
Li, Hanzeng
Chen, Jeng-Ting
Guo, Hongyan
Yoshina, Sawako
Chen, Yu-Zen
Zhao, Xiang
Wu, Xiaoqi
Liu, Bin
Mitani, Shohei
Yu, Jau-Song
Xue, Ding
author_facet Peng, Yu
Zhang, Man
Zheng, Lingjun
Liang, Qian
Li, Hanzeng
Chen, Jeng-Ting
Guo, Hongyan
Yoshina, Sawako
Chen, Yu-Zen
Zhao, Xiang
Wu, Xiaoqi
Liu, Bin
Mitani, Shohei
Yu, Jau-Song
Xue, Ding
author_sort Peng, Yu
collection PubMed
description Radiation-induced bystander effects (RIBE) refer to a unique process, in which factors released by irradiated cells or tissues exert effects on other parts of the animal not exposed to radiation, causing genomic instability, stress responses, and altered apoptosis or cell proliferation(1–3). Despite important implications in radioprotection, radiation safety and radiotherapy, the molecular identities of RIBE factors and their mechanisms of action remain elusive. Here we use C. elegans as an animal model to study RIBE and have identified a cysteine protease CPR-4, a human cathepsin B homolog, as the first RIBE factor in nematodes. CPR-4 is secreted from animals irradiated with ultraviolet (UV) or ionizing gamma rays (IR) and is the major factor in the conditioned medium that leads to inhibition of cell death and increased embryonic lethality in unirradiated animals. Moreover, CPR-4 causes these effects and stress response at unexposed sites distal to the irradiated tissue. The activity of CPR-4 is regulated by the p53 homolog cep-1 in response to radiation and CPR-4 appears to act through the insulin-like growth factor receptor, DAF-2, to exert RIBE. Our study provides critical insights into the elusive RIBE and will facilitate identification of additional RIBE factors and their mechanisms of action.
format Online
Article
Text
id pubmed-5892829
institution National Center for Biotechnology Information
language English
publishDate 2017
record_format MEDLINE/PubMed
spelling pubmed-58928292018-04-10 Cysteine protease cathepsin B mediates radiation-induced bystander effects Peng, Yu Zhang, Man Zheng, Lingjun Liang, Qian Li, Hanzeng Chen, Jeng-Ting Guo, Hongyan Yoshina, Sawako Chen, Yu-Zen Zhao, Xiang Wu, Xiaoqi Liu, Bin Mitani, Shohei Yu, Jau-Song Xue, Ding Nature Article Radiation-induced bystander effects (RIBE) refer to a unique process, in which factors released by irradiated cells or tissues exert effects on other parts of the animal not exposed to radiation, causing genomic instability, stress responses, and altered apoptosis or cell proliferation(1–3). Despite important implications in radioprotection, radiation safety and radiotherapy, the molecular identities of RIBE factors and their mechanisms of action remain elusive. Here we use C. elegans as an animal model to study RIBE and have identified a cysteine protease CPR-4, a human cathepsin B homolog, as the first RIBE factor in nematodes. CPR-4 is secreted from animals irradiated with ultraviolet (UV) or ionizing gamma rays (IR) and is the major factor in the conditioned medium that leads to inhibition of cell death and increased embryonic lethality in unirradiated animals. Moreover, CPR-4 causes these effects and stress response at unexposed sites distal to the irradiated tissue. The activity of CPR-4 is regulated by the p53 homolog cep-1 in response to radiation and CPR-4 appears to act through the insulin-like growth factor receptor, DAF-2, to exert RIBE. Our study provides critical insights into the elusive RIBE and will facilitate identification of additional RIBE factors and their mechanisms of action. 2017-07-19 2017-07-27 /pmc/articles/PMC5892829/ /pubmed/28723894 http://dx.doi.org/10.1038/nature23284 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms Reprints and permissions information are available at www.nature.com/reprints.
spellingShingle Article
Peng, Yu
Zhang, Man
Zheng, Lingjun
Liang, Qian
Li, Hanzeng
Chen, Jeng-Ting
Guo, Hongyan
Yoshina, Sawako
Chen, Yu-Zen
Zhao, Xiang
Wu, Xiaoqi
Liu, Bin
Mitani, Shohei
Yu, Jau-Song
Xue, Ding
Cysteine protease cathepsin B mediates radiation-induced bystander effects
title Cysteine protease cathepsin B mediates radiation-induced bystander effects
title_full Cysteine protease cathepsin B mediates radiation-induced bystander effects
title_fullStr Cysteine protease cathepsin B mediates radiation-induced bystander effects
title_full_unstemmed Cysteine protease cathepsin B mediates radiation-induced bystander effects
title_short Cysteine protease cathepsin B mediates radiation-induced bystander effects
title_sort cysteine protease cathepsin b mediates radiation-induced bystander effects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5892829/
https://www.ncbi.nlm.nih.gov/pubmed/28723894
http://dx.doi.org/10.1038/nature23284
work_keys_str_mv AT pengyu cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT zhangman cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT zhenglingjun cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT liangqian cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT lihanzeng cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT chenjengting cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT guohongyan cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT yoshinasawako cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT chenyuzen cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT zhaoxiang cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT wuxiaoqi cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT liubin cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT mitanishohei cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT yujausong cysteineproteasecathepsinbmediatesradiationinducedbystandereffects
AT xueding cysteineproteasecathepsinbmediatesradiationinducedbystandereffects