Overexpression of Selenoprotein H Reduces Ht22 Neuronal Cell Death after UVB Irradiation by Preventing Superoxide Formation

<p>Selenoproteins have been shown to exhibit a variety of biological functions, including antioxidant functions, maintaining cellular redox balance, and heavy metal detoxification. UV irradiation-induced damage is partially mediated by increased oxygen radical production. The present study is...

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Main Author: Kamel E. Ben Jilani, Jun Panee, Qingping He, Marla J. Berry, Ping-An Li
Format: Article
Language:English
Published: Ivyspring International Publisher 2007-01-01
Series:International Journal of Biological Sciences
Online Access:http://www.biolsci.org/v03p0198.htm
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author Kamel E. Ben Jilani, Jun Panee, Qingping He, Marla J. Berry, Ping-An Li
author_facet Kamel E. Ben Jilani, Jun Panee, Qingping He, Marla J. Berry, Ping-An Li
author_sort Kamel E. Ben Jilani, Jun Panee, Qingping He, Marla J. Berry, Ping-An Li
collection DOAJ
description <p>Selenoproteins have been shown to exhibit a variety of biological functions, including antioxidant functions, maintaining cellular redox balance, and heavy metal detoxification. UV irradiation-induced damage is partially mediated by increased oxygen radical production. The present study is designed to examine the antioxidative effects of human selenoprotein H (hSelH) after brief period of UVB irradiation on the murine hippocampal neuronal cell line Ht22. Ht22 cells were stably transfected with the hSelH gene or with MSCV empty vector and exposed to UVB irradiation with or without the presence of serum. The results showed that cell viability was significantly higher in hSelH-transfected cells compared to the MSCV vector-transfected cells after 24 h of recovery with or without the presence of serum in the media. Further studies revealed that while the number of superoxide anion (O2&#729;-) positive cells was increased following a 7 mJ/cm<sup>2</sup> of UVB irradiation and 5 h of recovery, overexpression of hSelH significantly reduced superoxide production. These results suggest that hSelH overexpression protects cells from UVB irradiation-induced cell death by reducing the O2&#729;- formation.</p>
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spelling doaj.art-b66b6ab754074592952507d463d634fb2022-12-22T00:35:19ZengIvyspring International PublisherInternational Journal of Biological Sciences1449-22882007-01-0134198204Overexpression of Selenoprotein H Reduces Ht22 Neuronal Cell Death after UVB Irradiation by Preventing Superoxide FormationKamel E. Ben Jilani, Jun Panee, Qingping He, Marla J. Berry, Ping-An Li<p>Selenoproteins have been shown to exhibit a variety of biological functions, including antioxidant functions, maintaining cellular redox balance, and heavy metal detoxification. UV irradiation-induced damage is partially mediated by increased oxygen radical production. The present study is designed to examine the antioxidative effects of human selenoprotein H (hSelH) after brief period of UVB irradiation on the murine hippocampal neuronal cell line Ht22. Ht22 cells were stably transfected with the hSelH gene or with MSCV empty vector and exposed to UVB irradiation with or without the presence of serum. The results showed that cell viability was significantly higher in hSelH-transfected cells compared to the MSCV vector-transfected cells after 24 h of recovery with or without the presence of serum in the media. Further studies revealed that while the number of superoxide anion (O2&#729;-) positive cells was increased following a 7 mJ/cm<sup>2</sup> of UVB irradiation and 5 h of recovery, overexpression of hSelH significantly reduced superoxide production. These results suggest that hSelH overexpression protects cells from UVB irradiation-induced cell death by reducing the O2&#729;- formation.</p>http://www.biolsci.org/v03p0198.htm
spellingShingle Kamel E. Ben Jilani, Jun Panee, Qingping He, Marla J. Berry, Ping-An Li
Overexpression of Selenoprotein H Reduces Ht22 Neuronal Cell Death after UVB Irradiation by Preventing Superoxide Formation
International Journal of Biological Sciences
title Overexpression of Selenoprotein H Reduces Ht22 Neuronal Cell Death after UVB Irradiation by Preventing Superoxide Formation
title_full Overexpression of Selenoprotein H Reduces Ht22 Neuronal Cell Death after UVB Irradiation by Preventing Superoxide Formation
title_fullStr Overexpression of Selenoprotein H Reduces Ht22 Neuronal Cell Death after UVB Irradiation by Preventing Superoxide Formation
title_full_unstemmed Overexpression of Selenoprotein H Reduces Ht22 Neuronal Cell Death after UVB Irradiation by Preventing Superoxide Formation
title_short Overexpression of Selenoprotein H Reduces Ht22 Neuronal Cell Death after UVB Irradiation by Preventing Superoxide Formation
title_sort overexpression of selenoprotein h reduces ht22 neuronal cell death after uvb irradiation by preventing superoxide formation
url http://www.biolsci.org/v03p0198.htm
work_keys_str_mv AT kamelebenjilanijunpaneeqingpinghemarlajberrypinganli overexpressionofselenoproteinhreducesht22neuronalcelldeathafteruvbirradiationbypreventingsuperoxideformation