Tata F, Hartley D A
Department of Biochemistry, Imperial College of Science, Technology and Medicine, London, UK.
Mech Dev. 1995 Jun;51(2-3):305-15. doi: 10.1016/0925-4773(95)00377-0.
The neurogenic genes of Drosophila act during many different times and places during development. It is thought their role is to repress cell fate within a group of equivalent cells and thus allow the singling out of discrete numbers of precursors. Amongst the genes at the neurogenic locus, Enhancer of split is a family of seven related genes that encode proteins containing the basic helix-loop-helix motif characteristic of transcriptional regulators. Previous functional analyses of these genes have relied on deletions which eliminate many other genes. We have ectopically expressed two of the Enhancer of split basic helix-loop-helix genes, m5 and m8, to test their effect on the determination of the precursor cells of adult sensory organs. Ectopic expression of m5 or m8 before bristle precursor division results in loss of sensory bristles from all parts of the adult fly. Ectopic expression after bristle precursor division produces bristles with aberrant cuticular structures. We have also tested the effect of reducing Enhancer of split gene function using mitotic recombination and show that this de-represses the neural fate and produces supernumerary sensory bristle neurons. We conclude that the Enhancer of split basic helix-loop-helix genes inhibit neural fate during the selection of neural precursors, and that they also play a role in restricting the neuronal fate to one of the four progeny cells of the bristle precursor.
果蝇的神经源基因在发育过程中的许多不同时间和位置发挥作用。人们认为它们的作用是在一组等同的细胞中抑制细胞命运,从而使离散数量的前体细胞得以分离出来。在神经源位点的基因中,分裂增强子是一个由七个相关基因组成的家族,这些基因编码的蛋白质含有转录调节因子特有的碱性螺旋-环-螺旋基序。以往对这些基因的功能分析依赖于消除许多其他基因的缺失突变。我们异位表达了两个分裂增强子碱性螺旋-环-螺旋基因,m5和m8,以测试它们对成虫感觉器官前体细胞确定的影响。在刚毛前体细胞分裂之前异位表达m5或m8会导致成年果蝇所有部位的感觉刚毛缺失。在刚毛前体细胞分裂之后异位表达会产生具有异常表皮结构的刚毛。我们还利用有丝分裂重组测试了降低分裂增强子基因功能的效果,结果表明这会解除对神经命运的抑制并产生额外的感觉刚毛神经元。我们得出结论,分裂增强子碱性螺旋-环-螺旋基因在神经前体细胞的选择过程中抑制神经命运,并且它们在将神经元命运限制在刚毛前体细胞的四个子细胞之一中也发挥作用。