Chew Su Kit, Akdemir Fatih, Chen Po, Lu Wan-Jin, Mills Kathryn, Daish Tasman, Kumar Sharad, Rodriguez Antony, Abrams John M
Department of Cell Biology, UT Southwestern Medical Center, Dallas, TX 75390, USA.
Dev Cell. 2004 Dec;7(6):897-907. doi: 10.1016/j.devcel.2004.09.016.
Among the seven caspases encoded in the fly genome, only dronc contains a caspase recruitment domain. To assess the function of this gene in development, we produced a null mutation in dronc. Animals lacking zygotic dronc are defective for programmed cell death (PCD) and arrest as early pupae. These mutants present a range of defects, including extensive hyperplasia of hematopoietic tissues, supernumerary neuronal cells, and head involution failure. dronc genetically interacts with the Ced4/Apaf1 counterpart, Dark, and adult structures lacking dronc are disrupted for fine patterning. Furthermore, in diverse models of metabolic injury, dronc- cells are completely insensitive to induction of cell killing. These findings establish dronc as an essential regulator of cell number in development and illustrate broad requirements for this apical caspase in adaptive responses during stress-induced apoptosis.
在果蝇基因组编码的七种半胱天冬酶中,只有dronc含有半胱天冬酶募集结构域。为了评估该基因在发育中的功能,我们构建了dronc的无效突变体。缺乏合子dronc的动物在程序性细胞死亡(PCD)方面存在缺陷,并在早期蛹期停滞发育。这些突变体表现出一系列缺陷,包括造血组织广泛增生、神经元细胞过多以及头部内陷失败。dronc与Ced4/Apaf1的对应物Dark发生遗传相互作用,缺乏dronc的成虫结构在精细模式形成方面受到破坏。此外,在多种代谢损伤模型中,缺乏dronc的细胞对细胞杀伤诱导完全不敏感。这些发现确立了dronc是发育过程中细胞数量的重要调节因子,并说明了这种顶端半胱天冬酶在应激诱导的细胞凋亡的适应性反应中的广泛需求。