首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >THAP5 is a human cardiac-specific inhibitor of cell cycle that is cleaved by the proapoptotic Omi/HtrA2 protease during cell death
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THAP5 is a human cardiac-specific inhibitor of cell cycle that is cleaved by the proapoptotic Omi/HtrA2 protease during cell death

机译:THAP5是一种人类心脏特异性细胞周期抑制剂在细胞死亡期间被促凋亡的Omi / HtrA2蛋白酶裂解

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摘要

Omi/HtrA2 is a mitochondrial serine protease that has a dual function: while confined in the mitochondria, it promotes cell survival, but when released into the cytoplasm, it participates in caspase-dependent as well as caspase-independent cell death. To investigate the mechanism of Omi/HtrA2's function, we set out to isolate and characterize novel substrates for this protease. We have identified Thanatos-associated protein 5 (THAP5) as a specific interactor and substrate of Omi/HtrA2 in cells undergoing apoptosis. This protein is an uncharacterized member of the THAP family of proteins. THAP5 has a unique pattern of expression and is found predominantly in the human heart, although a very low expression is also seen in the human brain and muscle. THAP5 protein is localized in the nucleus and, when ectopically expressed, induces cell cycle arrest. During apoptosis, THAP5 protein is degraded, and this process can be blocked using a specific Omi/HtrA2 inhibitor, leading to reduced cell death. In patients with coronary artery disease, THAP5 protein levels substantially decrease in the myocardial infarction area, suggesting a potential role of this protein in human heart disease. This work identifies human THAP5 as a cardiac-specific nuclear protein that controls cell cycle progression. Furthermore, during apoptosis, THAP5 is cleaved and removed by the proapoptotic Omi/HtrA2 protease. Taken together, we provide evidence to support that THAP5 and its regulation by Omi/HtrA2 provide a new link between cell cycle control and apoptosis in cardiomyocytes.
机译:Omi / HtrA2是一种具有双重功能的线粒体丝氨酸蛋白酶:虽然局限于线粒体中,但它可以促进细胞存活,但是当释放到细胞质中时,它参与caspase依赖性和caspase依赖性细胞死亡。为了研究Omi / HtrA2的功能机制,我们着手分离和表征该蛋白酶的新型底物。我们已经确定Thanatos相关蛋白5(THAP5)是Omi / HtrA2的特定相互作用因子和底物在细胞凋亡中。该蛋白质是THAP蛋白质家族的一个未表征成员。 THAP5具有独特的表达模式,主要在人的心脏中发现,尽管在人的大脑和肌肉中也观察到非常低的表达。 THAP5蛋白位于细胞核中,当异位表达时,可诱导细胞周期停滞。在凋亡过程中,THAP5蛋白被降解,并且可以使用特定的Omi / HtrA2抑制剂阻断这一过程,从而减少细胞死亡。在患有冠状动脉疾病的患者中,心肌梗塞区域的THAP5蛋白水平显着降低,表明该蛋白在人类心脏病中的潜在作用。这项工作确定人THAP5是控制细胞周期进程的心脏特异性核蛋白。此外,在凋亡过程中,THAP5被促凋亡的Omi / HtrA2蛋白酶裂解并去除。两者合计,我们提供证据来支持THAP5及其由Omi / HtrA2的调节提供了细胞周期控制与心肌细胞凋亡之间的新联系。

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