Hegde Ramesh, Srinivasula Srinivasa M, Zhang ZhiJia, Wassell Richard, Mukattash Rula, Cilenti Lucia, DuBois Garrett, Lazebnik Yuri, Zervos Antonis S, Fernandes-Alnemri Teresa, Alnemri Emad S
Center for Apoptosis Research and the Department of Microbiology and Immunology, Kimmel Cancer Institute, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.
J Biol Chem. 2002 Jan 4;277(1):432-8. doi: 10.1074/jbc.M109721200. Epub 2001 Oct 17.
To identify human proteins that bind to the Smac and caspase-9 binding pocket on the baculoviral inhibitor of apoptosis protein (IAP) repeat 3 (BIR3) domain of human XIAP, we used BIR3 as an affinity reagent, followed by elution with the BIR3 binding peptide AVPIA, microsequencing, and mass spectrometry. The mature serine protease Omi (also known as HtrA2) was identified as a mitochondrial direct BIR3-binding protein and a caspase activator. Like mature Smac (also known as Diablo), mature Omi contains a conserved IAP-binding motif (AVPS) at its N terminus, which is exposed after processing of its N-terminal mitochondrial targeting sequence upon import into the mitochondria. Mature Omi is released together with mature Smac from the mitochondria into the cytosol upon disruption of the outer mitochondrial membrane during apoptosis. Finally, mature Omi can induce apoptosis in human cells in a caspase-independent manner through its protease activity and in a caspase-dependent manner via its ability to disrupt caspase-IAP interaction. Our results provide clear evidence for the involvement of a mitochondrial serine protease in the apoptotic pathway, emphasizing the critical role of the mitochondria in cell death.
为了鉴定与人类X连锁凋亡抑制蛋白(XIAP)的杆状病毒凋亡抑制蛋白(IAP)重复序列3(BIR3)结构域上的Smac和半胱天冬酶-9结合口袋相结合的人类蛋白质,我们使用BIR3作为亲和试剂,随后用BIR3结合肽AVPIA洗脱、进行微量测序和质谱分析。成熟的丝氨酸蛋白酶Omi(也称为HtrA2)被鉴定为一种线粒体直接BIR3结合蛋白和半胱天冬酶激活剂。与成熟的Smac(也称为Diablo)一样,成熟的Omi在其N端含有一个保守的IAP结合基序(AVPS),在导入线粒体时其N端线粒体靶向序列加工后该基序暴露出来。在凋亡过程中,当线粒体外膜破裂时,成熟的Omi与成熟的Smac一起从线粒体释放到细胞质中。最后,成熟的Omi可以通过其蛋白酶活性以不依赖半胱天冬酶的方式以及通过其破坏半胱天冬酶-IAP相互作用的能力以依赖半胱天冬酶的方式诱导人类细胞凋亡。我们的结果为线粒体丝氨酸蛋白酶参与凋亡途径提供了明确证据,强调了线粒体在细胞死亡中的关键作用。