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谷胱甘肽过氧化物酶 1 可保护小鼠心脏线粒体免受缺氧/再氧化损伤。

Glutathione peroxidase 1 protects mitochondria against hypoxia/reoxygenation damage in mouse hearts.

机构信息

National Research Laboratory for Mitochondrial Signaling, Department of Physiology, College of Medicine, Cardiovascular and Metabolic Disease Center, FIRST Mitochondrial Research Group, Inje University, 633-165 Gaegeum-Dong, Busanjin-Gu, Busan, 613-735, Korea.

出版信息

Pflugers Arch. 2010 Jun;460(1):55-68. doi: 10.1007/s00424-010-0811-7. Epub 2010 Mar 20.

Abstract

Glutathione peroxidase 1 (GPx1) plays an important role in preventing cardiac dysfunction following ischemia-reperfusion injury. However, its role in protecting cardiac mitochondria against reoxygenation-induced reactive oxygen species (ROS) generation in vivo is unclear. We examined the role of GPx1 in protecting cardiac mitochondria against hypoxia-reoxygenation (HR) damage by testing for alterations in cardiac mitochondrial function. We used a two-dimensional gel electrophoresis proteomics analysis to examine the effects of reoxygenation on cardiac protein in wild-type (GPx1(+/+)) and GPx1 knockout (GPx1(-/-)) mouse hearts. We identified 42 protein spots showing differential expression in the two groups. Sixteen of the proteins identified were located in mitochondria and were involved in a number of key metabolic pathways. To verify our proteomics findings functionally, we performed NADH autofluorescence measurements and ATP production assays. The reduced expression of oxidative phosphorylation proteins in GPx1(-/-) mice following HR treatment resulted in loss of the mitochondrial membrane potential and decreased mitochondrial respiration. Mitochondrial ROS production and oxidative mtDNA damage were increased markedly during reoxygenation in GPx1(-/-) hearts. We also found morphological abnormalities in cardiac mitochondria and myocytes in HR-treated GPx1(-/-). This is the first report of the role of GPx1 in protecting cardiac mitochondria against reoxygenation damage in vivo. These findings will help clarify the mechanisms of HR injury and will aid in the development of antioxidant therapies to prevent cardiac mitochondrial dysfunction associated with reoxygenation.

摘要

谷胱甘肽过氧化物酶 1 (GPx1) 在防止缺血再灌注损伤引起的心功能障碍方面发挥着重要作用。然而,其在保护心脏线粒体免受再氧化诱导的活性氧 (ROS) 生成中的作用在体内尚不清楚。我们通过测试心脏线粒体功能的变化来研究 GPx1 在保护心脏线粒体免受缺氧再复氧 (HR) 损伤中的作用。我们使用二维凝胶电泳蛋白质组学分析来检测再复氧对野生型 (GPx1(+/+)) 和 GPx1 敲除 (GPx1(-/-)) 小鼠心脏中心脏蛋白质的影响。我们鉴定出两组之间差异表达的 42 个蛋白斑点。鉴定出的 16 种蛋白质位于线粒体中,参与了许多关键的代谢途径。为了从功能上验证我们的蛋白质组学发现,我们进行了 NADH 自发荧光测量和 ATP 产生测定。HR 处理后 GPx1(-/-) 小鼠氧化磷酸化蛋白的表达减少导致线粒体膜电位丧失和线粒体呼吸减少。在 GPx1(-/-) 心脏再复氧过程中,线粒体 ROS 产生和氧化 mtDNA 损伤显著增加。我们还在 HR 处理的 GPx1(-/-) 心脏中发现了心脏线粒体和肌细胞的形态异常。这是首次报道 GPx1 在保护心脏线粒体免受体内再复氧损伤中的作用。这些发现将有助于阐明 HR 损伤的机制,并有助于开发抗氧化治疗方法,以防止与再复氧相关的心脏线粒体功能障碍。

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