Fraser A G, Evan G I
Biochemistry of the Cell Nucleus Laboratory, Imperial Cancer Research Fund, London, UK.
EMBO J. 1997 May 15;16(10):2805-13. doi: 10.1093/emboj/16.10.2805.
Cysteine proteases of the ICE/CED-3 family (caspases) are required for the execution of programmed cell death (PCD) in a wide range of multicellular organisms. Caspases are implicated in the execution of apoptosis in Drosophila melanogaster by the observation that expression of baculovirus p35, a caspase inhibitor, blocks cell death in vivo in Drosophila. We report here the identification and characterization of drICE, a D. melanogaster caspase. We show that overexpression of drICE sensitizes Drosophila cells to apoptotic stimuli and that expression of an N-terminally truncated form of drICE rapidly induces apoptosis in Drosophila cells. Induction of apoptosis by rpr overexpression or by cycloheximide or etoposide treatment of Drosophila cells results in proteolytic processing of drICE. We further show that drICE is a cysteine protease that cleaves baculovirus p35 and Drosophila lamin DmO in vitro and that drICE is expressed at all the stages of Drosophila development at which PCD can be induced. Taken together, these results strongly argue that drICE is an apoptotic caspase that acts downstream of rpr. drICE is therefore the first unequivocal link between the molecular machinery of Drosophila cell death and the conserved machinery of Caenorhabditis elegans and vertebrates. Identification of drICE should facilitate the elucidation of upstream regulators and downstream targets of caspases by genetic screening.
ICE/CED-3家族的半胱氨酸蛋白酶(胱天蛋白酶)在多种多细胞生物体中执行程序性细胞死亡(PCD)时是必需的。通过观察杆状病毒p35(一种胱天蛋白酶抑制剂)的表达可在果蝇体内阻断细胞死亡,发现胱天蛋白酶与黑腹果蝇的细胞凋亡执行有关。我们在此报告黑腹果蝇胱天蛋白酶drICE的鉴定和特性。我们表明,drICE的过表达使果蝇细胞对凋亡刺激敏感,并且N端截短形式的drICE的表达可在果蝇细胞中迅速诱导凋亡。rpr过表达或用环己酰亚胺或依托泊苷处理果蝇细胞诱导凋亡会导致drICE的蛋白水解加工。我们进一步表明,drICE是一种半胱氨酸蛋白酶,可在体外切割杆状病毒p35和果蝇核纤层蛋白DmO,并且drICE在果蝇发育的所有可诱导PCD的阶段均有表达。综上所述,这些结果有力地表明drICE是一种凋亡胱天蛋白酶,作用于rpr的下游。因此,drICE是果蝇细胞死亡分子机制与秀丽隐杆线虫和脊椎动物保守机制之间的第一个明确联系。drICE的鉴定应有助于通过基因筛选阐明胱天蛋白酶的上游调节因子和下游靶标。