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由半胱天冬酶诱导的RasGAP裂解所产生的抗凋亡信号传导。

Antiapoptotic signaling generated by caspase-induced cleavage of RasGAP.

作者信息

Yang J Y, Widmann C

机构信息

Institut de Biologie Cellulaire et de Morphologie, Université de Lausanne, Lausanne, Switzerland.

出版信息

Mol Cell Biol. 2001 Aug;21(16):5346-58. doi: 10.1128/MCB.21.16.5346-5358.2001.

Abstract

Activation of caspases 3 and 9 is thought to commit a cell irreversibly to apoptosis. There are, however, several documented situations (e.g., during erythroblast differentiation) in which caspases are activated and caspase substrates are cleaved with no associated apoptotic response. Why the cleavage of caspase substrates leads to cell death in certain cases but not in others is unclear. One possibility is that some caspase substrates generate antiapoptotic signals when cleaved. Here we show that RasGAP is one such protein. Caspases cleave RasGAP into a C-terminal fragment (fragment C) and an N-terminal fragment (fragment N). Fragment C expressed alone induces apoptosis, but this effect could be totally blocked by fragment N. Fragment N could also block apoptosis induced by low levels of caspase 9. As caspase activity increases, fragment N is further cleaved into fragments N1 and N2. Apoptosis induced by high levels of caspase 9 or by cisplatin was strongly potentiated by fragment N1 or N2 but not by fragment N. The present study supports a model in which RasGAP functions as a sensor of caspase activity to determine whether or not a cell should survive. When caspases are mildly activated, the partial cleavage of RasGAP protects cells from apoptosis. When caspase activity reaches levels that allow completion of RasGAP cleavage, the resulting RasGAP fragments turn into potent proapoptotic molecules.

摘要

半胱天冬酶3和9的激活被认为会使细胞不可逆转地走向凋亡。然而,有一些已记录的情况(例如,在成红细胞分化过程中),半胱天冬酶被激活且半胱天冬酶底物被切割,但却没有相关的凋亡反应。为何半胱天冬酶底物的切割在某些情况下会导致细胞死亡而在其他情况下却不会,目前尚不清楚。一种可能性是,一些半胱天冬酶底物在被切割时会产生抗凋亡信号。在此我们表明,RasGAP就是这样一种蛋白质。半胱天冬酶将RasGAP切割成一个C端片段(片段C)和一个N端片段(片段N)。单独表达的片段C会诱导凋亡,但这种效应可被片段N完全阻断。片段N也能阻断低水平半胱天冬酶9诱导的凋亡。随着半胱天冬酶活性增加,片段N会进一步切割成片段N1和N2。高水平半胱天冬酶9或顺铂诱导的凋亡会被片段N1或N2强烈增强,但不会被片段N增强。本研究支持一种模型,即RasGAP作为半胱天冬酶活性的传感器,以确定细胞是否应该存活。当半胱天冬酶被轻度激活时,RasGAP的部分切割可保护细胞免于凋亡。当半胱天冬酶活性达到允许RasGAP完全切割的水平时,产生的RasGAP片段会变成强效的促凋亡分子。

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