Liu E, Restifo L L
ARL Division of Neurobiology, University of Arizona, Tucson 85721-0077, USA.
J Neurobiol. 1998 Feb 15;34(3):253-70. doi: 10.1002/(sici)1097-4695(19980215)34:3<253::aid-neu5>3.0.co;2-1.
During metamorphosis, the central nervous system (CNS) is reconstructed through the concerted action of cell birth, death, and remodeling, so that it can serve the novel and complex behavioral needs of the adult insect. In Drosophila, Broad Complex (BRC) zinc-finger transcription factors are essential for many aspects of metamorphosis, including reorganization of the CNS. In particular, we showed previously that some mutant alleles disrupt the assembly of visual system synaptic neuropils. Using an enhancer-detector screen, we have now identified a candidate BRC target gene, H217, that is normally expressed in visual system neural precursor cells of the inner proliferative center. Moreover, the P-element insertion in the H217 line has caused a hypomorphic mutation in an essential gene, with an optic lobe disorganization phenotype very similar to that seen in BRC mutants. In BRC mutants of the br complementation group (but not in rbp or 2Bc mutants), the H217 enhancer is ectopically expressed in lamina precursor cells (LPCs) whose proliferation is regulated by signals from photoreceptor axons. As predicted by the current model of BRC structure-function relationships, we demonstrated that BRC-Z2 isoforms, when induced during the third larval instar, can repress H217 enhancer activity in the LPCs, whereas BRC-Z3 cannot. Taken together, the data suggest that the H217 P element has tagged an essential gene repressed by BRC-Z2 in LPCs and required for the normal architecture of the retinotopically connected visual system neuropils.
在变态发育过程中,中枢神经系统(CNS)通过细胞生成、死亡和重塑的协同作用进行重建,以便能够满足成年昆虫新的复杂行为需求。在果蝇中,Broad Complex(BRC)锌指转录因子对于变态发育的许多方面至关重要,包括中枢神经系统的重组。特别是,我们先前表明一些突变等位基因会破坏视觉系统突触神经纤维网的组装。通过增强子检测筛选,我们现在鉴定出一个候选的BRC靶基因H217,它通常在内侧增殖中心的视觉系统神经前体细胞中表达。此外,H217品系中的P元件插入导致一个必需基因发生亚效突变,其视叶紊乱表型与BRC突变体中所见的非常相似。在br互补群的BRC突变体中(但在rbp或2Bc突变体中未出现),H217增强子在其增殖受光感受器轴突信号调节的层板前体细胞(LPCs)中异位表达。正如当前BRC结构 - 功能关系模型所预测的那样,我们证明,在第三龄幼虫期诱导时BRC - Z2亚型可以抑制LPCs中的H217增强子活性,而BRC - Z3则不能。综上所述,数据表明H217 P元件标记了一个在LPCs中被BRC - Z2抑制且对视拓扑连接的视觉系统神经纤维网正常结构必不可少的基因。