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c-Myc和半胱天冬酶-2在细胞毒性药物诱导的细胞凋亡过程中参与激活Bax。

c-Myc and caspase-2 are involved in activating Bax during cytotoxic drug-induced apoptosis.

作者信息

Cao Xuefang, Bennett Richard L, May W Stratford

机构信息

University of Florida Shands Cancer Center and Department of Medicine, University of Florida College of Medicine, Gainesville, FL 32610, USA.

出版信息

J Biol Chem. 2008 May 23;283(21):14490-6. doi: 10.1074/jbc.M801107200. Epub 2008 Mar 28.

Abstract

Activation of Bax following diverse cytotoxic stress has been shown to be an essential gateway to mitochondrial dysfunction and activation of the intrinsic apoptotic pathway characterized by cytochrome c release with caspase-9/-3 activation. Interestingly, c-Myc has been reported to promote apoptosis by destabilizing mitochondrial integrity in a Bax-dependent manner. Stress-induced activation of caspase-2 may also induce permeabilization of mitochondria with activation of the intrinsic death pathway. To test whether c-Myc and caspase-2 cooperate to activate Bax and thereby mediate intrinsic apoptosis, small interfering RNA was used to efficiently knock down the expression of c-Myc, caspase-2, and Apaf-1, an activating component in the apoptosome, in two human cancer cell lines, lung adenocarcinoma A-549 and osteosarcoma U2-OS cells. Under conditions when the expression of endogenous c-Myc, caspase-2, or Apaf-1 is reduced 80-90%, cisplatin (or etoposide)-induced apoptosis is significantly decreased. Biochemical studies reveal that the expression of c-Myc and caspase-2 is crucial for cytochrome c release from mitochondria during cytotoxic stress and that Apaf-1 is only required following cytochrome c release to activate caspases-9/-3. Although knockdown of c-Myc or caspase-2 does not affect Bax expression, caspase-2 is important for cytosolic Bax to integrate into the outer mitochondrial membrane, and c-Myc is critical for oligomerization of Bax once integrated into the membrane.

摘要

多种细胞毒性应激后Bax的激活已被证明是线粒体功能障碍和以细胞色素c释放及caspase-9/-3激活为特征的内源性凋亡途径激活的关键入口。有趣的是,据报道c-Myc通过以Bax依赖的方式破坏线粒体完整性来促进凋亡。应激诱导的caspase-2激活也可能通过激活内源性死亡途径诱导线粒体通透性改变。为了测试c-Myc和caspase-2是否协同激活Bax从而介导内源性凋亡,在两种人类癌细胞系,即肺腺癌A-549和骨肉瘤U2-OS细胞中,使用小干扰RNA有效敲低c-Myc、caspase-2和凋亡小体中的激活成分Apaf-1的表达。在内源性c-Myc、caspase-2或Apaf-1的表达降低80-90%的条件下,顺铂(或依托泊苷)诱导的凋亡显著减少。生化研究表明,c-Myc和caspase-2的表达对于细胞毒性应激期间细胞色素c从线粒体释放至关重要,而Apaf-1仅在细胞色素c释放后激活caspases-9/-3时才是必需的。虽然敲低c-Myc或caspase-2不影响Bax的表达,但caspase-2对于胞质Bax整合到线粒体外膜很重要,而c-Myc对于Bax一旦整合到膜上后的寡聚化至关重要。

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