Molecular characterization of thyroid hormone-inhibited atrial L-type calcium channel expression: implication for atrial fibrillation in hyperthyroidism
被引:33
作者:
Chen, Wei-Jan
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机构:
Chang Gung Univ, Cardiovasc Div 1, Chang Gung Mem Hosp, Coll Med, Tao Yuan, TaiwanChang Gung Univ, Cardiovasc Div 1, Chang Gung Mem Hosp, Coll Med, Tao Yuan, Taiwan
Chen, Wei-Jan
[1
]
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机构:
Yeh, Yung-Hsin
[1
]
Lin, Kwang-Huei
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机构:
Chang Gung Univ, Dept Biochem, Tao Yuan, TaiwanChang Gung Univ, Cardiovasc Div 1, Chang Gung Mem Hosp, Coll Med, Tao Yuan, Taiwan
Lin, Kwang-Huei
[2
]
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Chang, Gwo-Jyh
[3
]
Kuo, Chi-Tai
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机构:
Chang Gung Univ, Cardiovasc Div 1, Chang Gung Mem Hosp, Coll Med, Tao Yuan, TaiwanChang Gung Univ, Cardiovasc Div 1, Chang Gung Mem Hosp, Coll Med, Tao Yuan, Taiwan
Kuo, Chi-Tai
[1
]
机构:
[1] Chang Gung Univ, Cardiovasc Div 1, Chang Gung Mem Hosp, Coll Med, Tao Yuan, Taiwan
[2] Chang Gung Univ, Dept Biochem, Tao Yuan, Taiwan
[3] Chang Gung Univ, Grad Inst Clin Med Sci, Tao Yuan, Taiwan
AMP-activated protein kinase signal transduction;
Atrial fibrillation;
Ion channels;
Signal transduction;
Thyroid;
MECHANISMS;
FIBROSIS;
MUSCLE;
GENES;
MODEL;
CREB;
D O I:
10.1007/s00395-010-0149-5
中图分类号:
R5 [内科学];
学科分类号:
1002 ;
100201 ;
摘要:
Atrial fibrillation (AF) is a common complication in hyperthyroidism. Earlier studies demonstrate that thyroid hormone decreases L-type calcium channel (LCC) current expression with resultant shortening of action potential duration (APD), providing a substrate for AF. The aim of this study was to investigate the potential mechanism underlying the regulatory effect of thyroid hormone on LCC. In a hyperthyroid rat model, thyroid hormone (triiodothyronine [T3]) administration down-regulated atrial LCC expression. In vitro, treatment of murine atrial myocytes (HL-1) with T3 decreased the expression of LCC and its current, resulting in abbreviation of APD. Furthermore, T3 inhibited the activation of cyclic AMP response element (CRE)-binding protein (CREB), including phosphorylation at Ser133 and its nuclear translocation. Transient transfection studies in HL-1 cells indicated that T3 reduced LCC promoter activity. Deletion and mutation analysis of the LCC promoter region along with chromatin immunoprecipitation using anti-CREB antibody showed that CRE was essential for T3-mediated LCC gene expression. Transfection of dominant-negative CREB (mutated Ser133) and mutant thyroid hormone receptor (TR, mutated Cys51) abolished the T3-dependent effects, suggesting an association between both transcriptional factors. Co-immunoprecipitation documented an increased binding of TR with CREB after T3 treatment. The transcriptional cross-talk 3 between TR and CREB bound to CRE mediates T3-inhibited CREB activity and LCC expression. Thyroid hormone-induced TR binding of CREB inhibits CREB activity and LCC current expression, which may contribute to AF. These findings provide an important mechanistic insight into hyperthyroidism-induced AF.