Dawson I A, Roth S, Akam M, Artavanis-Tsakonas S
Department of Biology, Howard Hughes Medical Institute, Yale University School of Medicine, New Haven, CT 06536-0812.
Development. 1993 Jan;117(1):359-76. doi: 10.1242/dev.117.1.359.
We describe the effects of mutations in the fizzy gene of Drosophila melanogaster and show that fizzy mutations cause cells in mitosis to arrest at metaphase. We show that maternally supplied fizzy activity is required for normal nuclear division in the preblastoderm embryo and, during later embryogenesis, that zygotic fizzy activity is required for the development of the ventrally derived epidermis and the central and peripheral nervous systems. In fizzy embryos, dividing cells in these tissues arrest at metaphase, fail to differentiate and ultimately die. In the ventral epidermis, if cells are prevented from entering mitosis by using a string mutation, cell death is prevented and the ability to differentiate ventral epidermis is restored in fizzy; string double mutant embryos. These results demonstrate that fizzy is a cell cycle mutation and that the normal function of the fizzy gene is required for dividing cells to exit metaphase and complete mitosis.
我们描述了果蝇fizzy基因中突变的影响,并表明fizzy突变会使有丝分裂中的细胞停滞在中期。我们发现,母源提供的fizzy活性是胚盘前期胚胎正常核分裂所必需的,而在胚胎发育后期,合子fizzy活性是腹侧表皮以及中枢和外周神经系统发育所必需的。在fizzy胚胎中,这些组织中正在分裂的细胞停滞在中期,无法分化并最终死亡。在腹侧表皮中,如果通过使用string突变阻止细胞进入有丝分裂,那么细胞死亡就会被阻止,并且在fizzy; string双突变胚胎中恢复腹侧表皮分化的能力。这些结果表明fizzy是一种细胞周期突变,并且fizzy基因的正常功能是分裂细胞退出中期并完成有丝分裂所必需的。