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从心脏提取物中鉴定出一种半胱天冬酶激活抑制剂;ATP可阻断凋亡小体的形成。

Identification of an inhibitor of caspase activation from heart extracts; ATP blocks apoptosome formation.

作者信息

Samali Afshin, O'Mahoney Martin, Reeve Janice, Logue Susan, Szegezdi Eva, McMahon Jill, Fearnhead Howard O

机构信息

Cell Stress and Apoptosis Laboratory, National Centre Biomedical Engineering Science, National University of Ireland, Galway, Ireland.

出版信息

Apoptosis. 2007 Mar;12(3):465-74. doi: 10.1007/s10495-006-0017-9.

Abstract

By revealing the biochemistry of apoptosis it is expected we will both improve our understanding of diseases where apoptosis plays an important role and aid the development of therapies for these disorders. Caspases are a family of proteases whose activity is required for apoptosis. In this study, a cell-free system was used to investigate the mechanism of caspase-9 activation in extracts from heart cells. Unlike extracts from other cell types, heart extracts were found to activate caspases poorly. This could be explained by the low levels of Apaf-1 in heart cells. However, subsequent testing showed that heart extracts contained an inhibitor of caspase activation that could block caspase activation in extracts from different cell types. Subsequent purification of the inhibitor of caspase activation from these extracts identified ATP. Caspase-9 is activated by recruitment into a multi-protein complex, the apoptosome, which then activates downstream caspases that kill the cell. Importantly, size exclusion chromatography showed that ATP inhibits apoptosome formation at physiologically relevant concentrations. Together these data support the hypothesis that intracellular ATP concentration is a critical factor in determining whether an apoptotic stimulus can induce apoptosome formation. Thus, the well described fall in intracellular ATP apoptosis is not an epiphenomenon but may be a pro-apoptotic event contributing to cell death.

摘要

通过揭示细胞凋亡的生物化学过程,我们有望增进对细胞凋亡起重要作用的疾病的理解,并有助于开发针对这些疾病的治疗方法。半胱天冬酶是一类蛋白酶,其活性是细胞凋亡所必需的。在本研究中,使用无细胞系统来研究心肌细胞提取物中半胱天冬酶-9的激活机制。与其他细胞类型的提取物不同,发现心肌提取物激活半胱天冬酶的能力较差。这可以通过心肌细胞中Apaf-1水平较低来解释。然而,随后的测试表明,心肌提取物含有一种半胱天冬酶激活抑制剂,它可以阻断不同细胞类型提取物中的半胱天冬酶激活。随后从这些提取物中纯化半胱天冬酶激活抑制剂,鉴定出是ATP。半胱天冬酶-9通过被招募到一种多蛋白复合物——凋亡小体中而被激活,凋亡小体随后激活下游的半胱天冬酶从而杀死细胞。重要的是,尺寸排阻色谱显示,ATP在生理相关浓度下会抑制凋亡小体的形成。这些数据共同支持了这样一种假说,即细胞内ATP浓度是决定凋亡刺激能否诱导凋亡小体形成的关键因素。因此,细胞凋亡过程中细胞内ATP的下降这一现象并非附带现象,而是可能是导致细胞死亡的促凋亡事件。

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