Redox up-regulated expression of rat liver manganese superoxide dismutase and Bcl-2 by thyroid hormone is associated with inhibitor of κB-α phosphorylation and nuclear factor-κB activation
Author
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Fernández Arancibia, Virginia
Author
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Tapia Opazo, Gladys
Author
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Varela, Patricia
Author
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Castillo, Iván
Author
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Mora, Catalina
Author
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Moya, Francisco
Author
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Orellana, Myriam
Author
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Videla Cabrera, Luis
Admission date
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2019-01-29T13:47:52Z
Available date
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2019-01-29T13:47:52Z
Publication date
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2005
Cita de ítem
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Journal of Endocrinology, Volumen 186, Issue 3, 2005, Pages 539-547
Identifier
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00220795
Identifier
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10.1677/joe.1.06261
Identifier
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https://repositorio.uchile.cl/handle/2250/159841
Abstract
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Recently, we demonstrated that 3,3',5-triiodothyronine (T3) induces oxidative stress in rat liver, with enhancement in the DNA binding of nuclear factor-kappaB (NF-kappaB) and the NF-kappaB-dependent expression of tumor necrosis factor-alpha (TNF-alpha). In this study, we show that T3 administration (daily doses of 0.1 mg/kg i.p. for three consecutive days) elicited a calorigenic response and higher liver O2 consumption rates, with increased serum levels of TNF-alpha (ELISA), liver inhibitor of kappaB (IkappaB-alpha) phosphorylation (Western blot analysis), and hepatic NF-kappaB DNA binding (EMSA) at 56-72 h after treatment. Within this time interval, liver manganese superoxide dismutase (MnSOD) activity and the protein expression of MnSOD and Bcl-2 are enhanced. These changes are abrogated by the administration of alpha-tocopherol (100 mg/kg i.p.) prior to T3. It is concluded that T3 treatment leads to the redox upregulation of MnSOD and Bcl-2 in rat liver, in association with TNF-alpha release and activation of the IkappaB-alpha kinase/NF-kappaB cascade, which may constitute a protective mechanism against free radical toxicity involving cell death signaling.
Redox up-regulated expression of rat liver manganese superoxide dismutase and Bcl-2 by thyroid hormone is associated with inhibitor of κB-α phosphorylation and nuclear factor-κB activation