首页> 外文期刊>Clinical and experimental pharmacology & physiology >Cardiac-specific overexpression of catalase prolongs lifespan and attenuates ageing-induced cardiomyocyte contractile dysfunction and protein damage.
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Cardiac-specific overexpression of catalase prolongs lifespan and attenuates ageing-induced cardiomyocyte contractile dysfunction and protein damage.

机译:Carit-Preced过表达过度表达延长寿命并衰减老化诱导的心肌细胞收缩功能障碍和蛋白质损伤。

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摘要

1. Oxidative stress plays a role in senescence-associated organ deterioration. This is supported by the beneficial effects of anti-oxidants against ageing-related organ damage, although their role in cardiac ageing has not been elucidated. 2. The aim of the present study was to examine the impact of cardiac-specific overexpression of catalase, an enzyme for H(2)O(2) detoxification, on cardiac contractile function and protein damage in young (3-4 months) and old (26-28 months) male mice. Lifespan was analysed using the Kaplan-Meier survival curve. Cardiomyocyte contractile indices at various stimulus frequencies (0.1-5.0 Hz) were analysed, including peak shortening (PS), time to 90% PS, time to 90% relengthening (TR(90)) and maximal velocity of shortening/relengthening (+/-dL/dt). Protein damage was assessed using protein carbonyl formation. Catalase transgenic mice showed longer lifespan than wild-type FVB mice. The catalase transgene itself did not alter bodyweight or organ weight, or myocyte function. Ageing depressed +/-dL/dt and prolonged TR(90), but had no effect on other indices in FVB mice. Increased frequency triggered decreases in PS amplitude were exaggerated in aged FVB myocytes. Interestingly, ageing-induced mechanical defects were significantly attenuated in myocytes from catalase mice. Protein carbonyl formation was elevated in aged FVB compared with young FVB mice, which was significantly diminished in catalase mice. The proteomes of the myocardium of young or old FVB and catalase mice were compared using two-dimensional gel electrophoresis and mass spectrometry. Six proteins with differential expression between young and old FVB groups were tentatively identified, some of which were reversed by catalase. 3. In summary, the present data suggest that catalase protects cardiomyocytes from ageing-induced contractile defects and protein damage.
机译:1.氧化应激在衰老相关器官劣化中起作用。这是通过抗氧化剂对衰老相关器官损伤的有益效果的支持,尽管它们在心脏老化中的作用尚未得到阐明。 2.本研究的目的是检测过氧化氢酶的心脏特异性过表达的影响,H(2)O(2)解毒的酶,年轻(3-4个月)的心脏收缩函数和蛋白质损伤老(26-28个月)雄性老鼠。使用Kaplan-Meier生存曲线分析了寿命。分析各种刺激频率(0.1-5.0Hz)的心肌细胞收缩指数,包括峰值缩短(PS),时间为90%PS,时间至90%,强度90%(TR(90))和缩短/更强的最大速度(+ / -dl / dt)。使用蛋白质羰基形成评估蛋白质损伤。过氧化氢酶转基因小鼠显示比野生型FVB小鼠更长的寿命。过氧化氢酶转基因本身没有改变体重或器官重量或肌细胞功能。老化抑郁+/- DL / DT和延长TR(90),但对FVB小鼠的其他索引没有影响。在FVB肌细胞老化的FVB肌细胞中夸大了PS振幅的增加的频率触发降低。有趣的是,衰老诱导的机械缺陷在来自过氧化度小鼠的肌细胞中显着减弱。与年轻FVB小鼠相比,FVB老化的蛋白质羰基形成升高,该小鼠在过氧化氢小鼠中显着降低。使用二维凝胶电泳和质谱法比较年轻或旧的FVB和过氧化氢酶小鼠心肌的蛋白质体。暂时鉴定了六种具有差异表达的六种蛋白质,其中一些由过氧化氢酶反转。 3.总之,本数据表明,过氧化氢酶保护心肌细胞免于衰老诱导的收缩缺陷和蛋白质损伤。

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