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首页> 外文期刊>Apoptosis: An international journal on programmed cell death >Urokinase plasminogen activator protects cardiac myocytes from oxidative damage and apoptosis via hOGG1 induction
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Urokinase plasminogen activator protects cardiac myocytes from oxidative damage and apoptosis via hOGG1 induction

机译:尿激酶纤溶酶原激活剂通过Hogg1诱导保护心肌细胞免受氧化损伤和细胞凋亡

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摘要

Abstract The role of uPA in tissue remodeling and cell migration is already well established. In addition, uPA was reported to stabilize p53, a key cell cycle control, DNA repair and apoptosis initiation protein. We aimed to determine the role of uPA-uPAR signaling towards cell survival or apoptosis in human adult cardiac myocytes (HACM). HACM were stimulated with uPA and DNA damage was inflicted by incubating cells with 200?μM H2O2. To analyze for apoptotic cells we applied TUNEL staining. Oxidative damage foci were analyzed by staining for 8-oxoguanine base pairs. In vivo qPCR analysis from RNA extracted from failing human hearts demonstrated a close relation of uPA with apoptosis and the p53 pathway. Furthermore, we observed a close correlation of uPA and p53 protein in homogenized tissue lysates. In vitro studies revealed that uPA preincubation protected HACM from oxidative damage induced cell death and reduced oxidative damage foci. uPA protection is independent of its catalytic activity, as the amino terminal fragment of uPA showed similar protection. A key enzyme for repairing oxidative DNA damage is the p53 target hOGG1. We found a significant increase of hOGG1 after pretreatment of HACM with uPA. Knockdown of hOGG1 completely abrogated the protective effect of uPA. We conclude that uPA might have a tissue protective role in human hearts besides its role in tissue remodeling. Tissue protection is mediated by the DNA repair protein hOGG1. This might be beneficial during tissue remodeling and thus could be a target for therapeutic approaches in the diseased heart.]]>
机译:<![CDATA [<标题>抽象 ara> UPA在组织重塑和单元迁移中的角色已经很好地建立。此外,据报道UPA稳定P53,一种关键细胞周期控制,DNA修复和凋亡引发蛋白。我们旨在确定UPA-UPAR信号传导对人体成人心肌细胞(HACM)中细胞存活或细胞凋亡的作用。用UPA刺激HACM,并通过200μmH<下标> 2 2 孵育细胞造成DNA损伤。用于分析凋亡细胞,我们应用Tunel染色。通过染色8-氧通碱基对分析氧化损伤焦点。从失败的人体中提取的RNA分析QPCR分析证明了UPA与凋亡和P53途径的密切关系。此外,我们观察到UPA和P53蛋白在均质组织裂解物中的紧密相关性。体外研究表明,UPA预孵育保护HACM免受氧化损伤诱导的细胞死亡和降低的氧化损伤焦点。 UPA保护与其催化活性无关,因为UPA的氨基末端片段显示出类似的保护。用于修复氧化DNA损伤的关键酶是P53靶术术术。我们发现HACM与UPA预处理后的脑袋1的显着增加。 Hogg1的敲低完全废除了UPA的保护作用。我们得出结论,除了在组织重塑中的作用外,UPA可能对人体中的组织保护作用。组织保护由DNA修复蛋白Hogg1介导。在组织重塑期间,这可能是有益的,因此可以是患病心脏中治疗方法的靶标。]>

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