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首页> 外文期刊>American Journal of Physiology >Role of oxidative stress in cardiac dysfunction of PPARalpha-/- mice.
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Role of oxidative stress in cardiac dysfunction of PPARalpha-/- mice.

机译:氧化应激在PPARalpha-/-小鼠心脏功能障碍中的作用。

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This study was designed to determine the effects of PPARalpha lack on cardiac mechanical performance and to identify potential intracellular mechanisms linking PPARalpha pathway deficiency to cardiac contractile dysfunction. Echocardiography, ex vivo papillary muscle assays, and in vitro motility assays were used to assess global, intrinsic ventricular muscle performance and myosin mechanical properties, respectively, in PPARalpha(-/-) and age-matched wild-type mice. Three-nitrotyrosine formation and 4-hydroxy-2-nonenal protein-adducts, both markers of oxidative damage, were analyzed by Western blot analysis and immunolabeling. Radical scavenging capacity was analyzed by measuring protein levels and/or activities of the main antioxidant enzymes, including catalase, glutathione peroxidase, and manganese and copper-zinc superoxide dismutases. Echocardiographic left ventricular fractional shortening in PPARalpha(-/-) was 16% lower than that in wild-type. Ex vivo left ventricular papillary muscle exhibitedreduced shortening velocity and isometric tension (three- and twofold, respectively). In vitro myosin-based velocity was approximately 20% slower in PPARalpha(-/-), indicating that myosin itself was involved in the contractile dysfunction. Staining of 3-nitrotyrosine was more pronounced in PPARalpha(-/-), and myosin heavy chain was the main nitrated protein. Formation of 3-nitrotyrosine myosin heavy chain was twofold higher in PPARalpha(-/-) and 4-hydroxy-2-nonenal protein-adducts were threefold higher. The expression and activity of manganese superoxide dismutase were respectively 33% and 50% lower in PPARalpha(-/-), with no changes in copper-zinc superoxide dismutase, catalase, or glutathione peroxidase. These findings demonstrate that PPARalpha pathway deficiency impairs cardiac function and also identify oxidative damage to myosin as a link between PPARalpha deficiency and contractile dysfunction.
机译:这项研究旨在确定PPARalpha缺乏对心脏机械性能的影响,并确定将PPARalpha途径缺乏与心脏收缩功能障碍联系起来的潜在细胞内机制。超声心动图,离体乳头肌测定和体外运动测定分别用于评估PPARalpha(-/-)和年龄匹配的野生型小鼠的整体,固有心室肌性能和肌球蛋白机械特性。通过蛋白质印迹分析和免疫标记分析了三硝基酪氨酸的形成和4-羟基-2-壬烯醛蛋白加合物,它们都是氧化损伤的标志。通过测量蛋白质水平和/或主要抗氧化剂酶(包括过氧化氢酶,谷胱甘肽过氧化物酶,锰和铜锌超氧化物歧化酶)的活性来分析自由基清除能力。 PPARalpha(-/-)的超声心动图左心室分数缩短比野生型低16%。离体左室乳头肌表现出降低的缩短速度和等轴测张力(分别为三倍和两倍)。体外基于肌球蛋白的速度在PPARalpha(-/-)中大约慢20%,表明肌球蛋白本身参与了收缩功能障碍。 3-硝基酪氨酸的染色在PPARalpha(-/-)中更为明显,而肌球蛋白重链是主要的硝化蛋白质。 3-硝基酪氨酸肌球蛋白重链的形成是PPARalpha(-/-)的两倍高,而4-羟基-2-壬烯蛋白加合物的三倍高。 PPARalpha(-/-)中锰超氧化物歧化酶的表达和活性分别降低了33%和50%,而铜锌超氧化物歧化酶,过氧化氢酶或谷胱甘肽过氧化物酶没有变化。这些发现表明,PPARalpha通路缺乏会损害心脏功能,并且还将肌球蛋白的氧化损伤确定为PPARalpha缺乏与收缩功能障碍之间的联系。

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