Mukamel Zohar, Kimchi Adi
Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 76100, Israel.
J Biol Chem. 2004 Aug 27;279(35):36732-8. doi: 10.1074/jbc.M400041200. Epub 2004 Jun 2.
Death-associated protein 3 (DAP3) was previously isolated in our laboratory as a positive mediator of cell death. It is a 46-kDa protein containing a GTP binding domain that was shown to be essential for the induction of cell death. DAP3 functions downstream of the receptor signaling complex, and its death-promoting effects depend on caspase activity. Recent reports have suggested that DAP3 is localized to the mitochondria, but no functional significance of this localization has been reported so far. Here, we study the sub-cellular localization and cellular function of human DAP3 (hDAP3). We found that hDAP3 is localized to the mitochondria and, in contrast to cytochrome c, is not released to the cytoplasm following several cell death signals. Overexpression of hDAP3 induced dramatic changes in the mitochondrial structure involving increased fragmentation of the mitochondria. Both the mitochondrial localization of hDAP3 and its GTP-binding activity were essential for the fragmentation. The punctiform mitochondrial morphology was similar to that observed upon treatment of HeLa cells with staurosporine. In fact, reduction of endogenous hDAP3 protein by RNA interference partially attenuated staurosporine-induced mitochondrial fission. Thus, hDAP3 is a necessary component in the molecular pathway that culminates in fragmented mitochondria, probably reflecting its involvement in the fission process. These results, for the first time, provide a specific functional role for hDAP3 in mitochondrial maintenance.
死亡相关蛋白3(DAP3)先前在我们实验室中作为细胞死亡的正向调节因子被分离出来。它是一种46 kDa的蛋白质,含有一个GTP结合结构域,该结构域被证明对诱导细胞死亡至关重要。DAP3在受体信号复合物的下游发挥作用,其促进死亡的作用依赖于半胱天冬酶的活性。最近的报道表明DAP3定位于线粒体,但迄今为止尚未报道这种定位的功能意义。在这里,我们研究了人DAP3(hDAP3)的亚细胞定位和细胞功能。我们发现hDAP3定位于线粒体,与细胞色素c不同,在几种细胞死亡信号后它不会释放到细胞质中。hDAP3的过表达导致线粒体结构发生显著变化,包括线粒体碎片化增加。hDAP3的线粒体定位及其GTP结合活性对于碎片化都是必不可少的。点状线粒体形态与用星形孢菌素处理HeLa细胞后观察到的形态相似。事实上,通过RNA干扰降低内源性hDAP3蛋白可部分减弱星形孢菌素诱导的线粒体分裂。因此,hDAP3是导致线粒体碎片化的分子途径中的必要组成部分,这可能反映了它参与了分裂过程。这些结果首次为hDAP3在线粒体维持中的特定功能作用提供了依据。