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UV irradiation/cold shock-mediated apoptosis is switched to bubbling cell death at low temperatures

When COS7 fibroblasts and other cells were exposed to UVC irradiation and cold shock at 4°C for 5 min, rapid upregulation and nuclear accumulation of NOS2, p53, WWOX, and TRAF2 occurred in 10–30 min. By time-lapse microscopy, an enlarging gas bubble containing nitric oxide (NO) was formed in the nuc...

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Autores principales: Chen, Szu-Jung, Lin, Pei-Wen, Lin, Hsin-Ping, Huang, Shenq-Shyang, Lai, Feng-Jie, Sheu, Hamm-Ming, Hsu, Li-Jin, Chang, Nan-Shan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4480731/
https://www.ncbi.nlm.nih.gov/pubmed/25779665
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author Chen, Szu-Jung
Lin, Pei-Wen
Lin, Hsin-Ping
Huang, Shenq-Shyang
Lai, Feng-Jie
Sheu, Hamm-Ming
Hsu, Li-Jin
Chang, Nan-Shan
author_facet Chen, Szu-Jung
Lin, Pei-Wen
Lin, Hsin-Ping
Huang, Shenq-Shyang
Lai, Feng-Jie
Sheu, Hamm-Ming
Hsu, Li-Jin
Chang, Nan-Shan
author_sort Chen, Szu-Jung
collection PubMed
description When COS7 fibroblasts and other cells were exposed to UVC irradiation and cold shock at 4°C for 5 min, rapid upregulation and nuclear accumulation of NOS2, p53, WWOX, and TRAF2 occurred in 10–30 min. By time-lapse microscopy, an enlarging gas bubble containing nitric oxide (NO) was formed in the nucleus in each cell that finally popped out to cause “bubbling death”. Bubbling occurred effectively at 4 and 22°C, whereas DNA fragmentation was markedly blocked at 4°C. When temperature was increased to 37°C, bubbling was retarded and DNA fragmentation occurred in 1 hr, suggesting that bubbling death is switched to apoptosis with increasing temperatures. Bubbling occurred prior to nuclear uptake of propidium iodide and DAPI stains. Arginine analog Nω-LAME inhibited NO synthase NOS2 and significantly suppressed the bubbling death. Unlike apoptosis, there were no caspase activation and flip-over of membrane phosphatidylserine (PS) during bubbling death. Bubbling death was significantly retarded in Wwox knockout MEF cells, as well as in cells overexpressing TRAF2 and dominant-negative p53. Together, UV/cold shock induces bubbling death at 4°C and the event is switched to apoptosis at 37°C. Presumably, proapoptotic WWOX and p53 block the protective TRAF2 to execute the bubbling death.
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spelling pubmed-44807312015-06-26 UV irradiation/cold shock-mediated apoptosis is switched to bubbling cell death at low temperatures Chen, Szu-Jung Lin, Pei-Wen Lin, Hsin-Ping Huang, Shenq-Shyang Lai, Feng-Jie Sheu, Hamm-Ming Hsu, Li-Jin Chang, Nan-Shan Oncotarget Research Paper When COS7 fibroblasts and other cells were exposed to UVC irradiation and cold shock at 4°C for 5 min, rapid upregulation and nuclear accumulation of NOS2, p53, WWOX, and TRAF2 occurred in 10–30 min. By time-lapse microscopy, an enlarging gas bubble containing nitric oxide (NO) was formed in the nucleus in each cell that finally popped out to cause “bubbling death”. Bubbling occurred effectively at 4 and 22°C, whereas DNA fragmentation was markedly blocked at 4°C. When temperature was increased to 37°C, bubbling was retarded and DNA fragmentation occurred in 1 hr, suggesting that bubbling death is switched to apoptosis with increasing temperatures. Bubbling occurred prior to nuclear uptake of propidium iodide and DAPI stains. Arginine analog Nω-LAME inhibited NO synthase NOS2 and significantly suppressed the bubbling death. Unlike apoptosis, there were no caspase activation and flip-over of membrane phosphatidylserine (PS) during bubbling death. Bubbling death was significantly retarded in Wwox knockout MEF cells, as well as in cells overexpressing TRAF2 and dominant-negative p53. Together, UV/cold shock induces bubbling death at 4°C and the event is switched to apoptosis at 37°C. Presumably, proapoptotic WWOX and p53 block the protective TRAF2 to execute the bubbling death. Impact Journals LLC 2015-02-10 /pmc/articles/PMC4480731/ /pubmed/25779665 Text en Copyright: © 2015 Chen et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Chen, Szu-Jung
Lin, Pei-Wen
Lin, Hsin-Ping
Huang, Shenq-Shyang
Lai, Feng-Jie
Sheu, Hamm-Ming
Hsu, Li-Jin
Chang, Nan-Shan
UV irradiation/cold shock-mediated apoptosis is switched to bubbling cell death at low temperatures
title UV irradiation/cold shock-mediated apoptosis is switched to bubbling cell death at low temperatures
title_full UV irradiation/cold shock-mediated apoptosis is switched to bubbling cell death at low temperatures
title_fullStr UV irradiation/cold shock-mediated apoptosis is switched to bubbling cell death at low temperatures
title_full_unstemmed UV irradiation/cold shock-mediated apoptosis is switched to bubbling cell death at low temperatures
title_short UV irradiation/cold shock-mediated apoptosis is switched to bubbling cell death at low temperatures
title_sort uv irradiation/cold shock-mediated apoptosis is switched to bubbling cell death at low temperatures
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4480731/
https://www.ncbi.nlm.nih.gov/pubmed/25779665
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