Quinn L M, Dorstyn L, Mills K, Colussi P A, Chen P, Coombe M, Abrams J, Kumar S, Richardson H
Department of Genetics, The University of Adelaide, North Terrace, Adelaide SA 5001, Australia.
J Biol Chem. 2000 Dec 22;275(51):40416-24. doi: 10.1074/jbc.M002935200.
Dronc is a caspase recruitment domain-containing Drosophila caspase that is expressed in a temporally and spatially restricted fashion during development. Dronc is the only fly caspase known to be regulated by the hormone ecdysone. Here we show that ectopic expression of dronc in the developing fly eye leads to increased cell death and an ablated eye phenotype that can be suppressed by halving the dosage of the genes in the H99 complex (reaper, hid, and grim) and enhanced by mutations in diap1. In contrast to previous reports, we show that the dronc eye ablation phenotype can be suppressed by coexpression of the baculoviral caspase inhibitor p35. Dronc also interacts, both genetically and biochemically, with the CED-4/Apaf-1 fly homolog, Dark. Furthermore, extracts made from Dark homozygous mutant flies have reduced ability to process Dronc, showing that Dark is required for Dronc processing. Finally, using the RNA interference technique, we show that loss of Dronc function in early Drosophila embryos results in a dramatic decrease in cell death, indicating that Dronc is important for programmed cell death during embryogenesis. These results suggest that Dronc is a key caspase mediating programmed cell death in Drosophila.
Dronc是一种含有半胱天冬酶招募结构域的果蝇半胱天冬酶,在发育过程中以时空受限的方式表达。Dronc是已知的唯一受蜕皮激素调节的果蝇半胱天冬酶。在此我们表明,在发育中的果蝇眼睛中异位表达dronc会导致细胞死亡增加和眼睛缺失表型,通过将H99复合体(收割者、hid和严峻)中的基因剂量减半可抑制该表型,而通过diap1中的突变则会增强该表型。与之前的报道相反,我们表明杆状病毒半胱天冬酶抑制剂p35的共表达可抑制dronc眼睛缺失表型。Dronc在遗传和生化方面也与CED-4/Apaf-1的果蝇同源物Dark相互作用。此外,从Dark纯合突变果蝇中提取的提取物处理Dronc的能力降低,表明Dark是Dronc加工所必需的。最后,使用RNA干扰技术,我们表明果蝇早期胚胎中Dronc功能的丧失会导致细胞死亡显著减少,这表明Dronc在胚胎发育过程中的程序性细胞死亡中起重要作用。这些结果表明,Dronc是介导果蝇程序性细胞死亡的关键半胱天冬酶。