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金属硫蛋白拮抗衰老诱导的心脏收缩功能障碍:蛋白酪氨酸磷酸酶1B、胰岛素受体酪氨酸磷酸化及蛋白激酶B的作用

Metallothionein antagonizes aging-induced cardiac contractile dysfunction: role of PTP1B, insulin receptor tyrosine phosphorylation and Akt.

作者信息

Fang Cindy X, Doser Thomas A, Yang Xiaoping, Sreejayan Nair, Ren Jun

机构信息

Division of Pharmaceutical Sciences & Center for Cardiovascular Research and Alternative Medicine, University of Wyoming, Laramie, 82071, USA.

出版信息

Aging Cell. 2006 Apr;5(2):177-85. doi: 10.1111/j.1474-9726.2006.00201.x.

Abstract

Aging is often accompanied by reduced insulin sensitivity and cardiac dysfunction. However, the causal relationship between the two remains poorly understood. This study was designed to determine the impact of cardiac-specific overexpression of antioxidant metallothionein (MT) on aging-associated cardiac dysfunction and impaired insulin signaling. Contractile and intracellular Ca(2+) properties were evaluated in left ventricular myocytes including peak shortening (PS), maximal velocity of shortening/relengthening (+/- dL/dt), time-to-PS (TPS), time-to-90% relengthening (TR(90)), fura-2 fluorescence intensity change (DeltaFFI) and intracellular Ca(2+) decay rate. Expression of insulin receptor, protein-tyrosine phosphatase 1B (PTP1B), phosphorylation of insulin receptor (Tyr1146) and Akt were evaluated by Western blot analysis. Aged wild-type FVB and MT transgenic mice (26-28 months old) displayed glucose intolerance and hyperinsulinemia. Cardiomyocytes from aged FVB mice exhibited prolonged TR(90) and intracellular Ca(2+) decay associated with normal PS, +/- dL/dt, TPS and DeltaFFI compared with those from young (2-3 months old) mice. Western blot analysis revealed reduced Akt expression and insulin (5 mU g(-1))-stimulated Akt phosphorylation, elevated PTP1B expression and diminished basal insulin receptor tyrosine phosphorylation associated with comparable insulin receptor expression in aged FVB mouse hearts. All of these aging-related defects in cardiac contractile function and insulin signaling (although not hyperinsulinemia and glucose intolerance) were significantly attenuated or ablated by MT transgene. These data indicate that enhanced antioxidant defense is beneficial for aging-induced cardiac contractile dysfunction and alteration in insulin signaling.

摘要

衰老常伴有胰岛素敏感性降低和心脏功能障碍。然而,两者之间的因果关系仍知之甚少。本研究旨在确定心脏特异性过表达抗氧化金属硫蛋白(MT)对衰老相关心脏功能障碍和胰岛素信号受损的影响。在左心室心肌细胞中评估收缩和细胞内Ca(2+)特性,包括峰值缩短(PS)、缩短/再延长的最大速度(+/- dL/dt)、达到PS的时间(TPS)、达到90%再延长的时间(TR(90))、fura-2荧光强度变化(DeltaFFI)和细胞内Ca(2+)衰减率。通过蛋白质印迹分析评估胰岛素受体、蛋白酪氨酸磷酸酶1B(PTP1B)、胰岛素受体(Tyr1146)的磷酸化和Akt的表达。老年野生型FVB和MT转基因小鼠(26 - 28个月大)表现出葡萄糖不耐受和高胰岛素血症。与年轻(2 - 3个月大)小鼠相比,老年FVB小鼠的心肌细胞表现出TR(90)延长和细胞内Ca(2+)衰减,而PS、+/- dL/dt、TPS和DeltaFFI正常。蛋白质印迹分析显示,老年FVB小鼠心脏中Akt表达降低以及胰岛素(5 mU g(-1))刺激的Akt磷酸化降低,PTP1B表达升高,基础胰岛素受体酪氨酸磷酸化减少,而胰岛素受体表达相当。MT转基因显著减轻或消除了心脏收缩功能和胰岛素信号传导中所有这些与衰老相关的缺陷(尽管不是高胰岛素血症和葡萄糖不耐受)。这些数据表明,增强抗氧化防御有利于衰老诱导的心脏收缩功能障碍和胰岛素信号改变。

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