Sedaghat Yalda, Miranda Wilson F, Sonnenfeld Margaret J
Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ontario K1H 8M5, Canada.
Development. 2002 Jun;129(11):2591-606. doi: 10.1242/dev.129.11.2591.
We establish that the jing zinc-finger transcription factor plays an essential role in controlling CNS midline and tracheal cell differentiation. jing transcripts and protein accumulate from stage 9 in the CNS midline, trachea and in segmental ectodermal stripes. JING protein localizes to the nuclei of CNS midline and tracheal cells implying a regulatory role during their development. Loss of jing-lacZ expression in homozygous sim mutants and induction of jing-lacZ by ectopic sim expression establish that jing is part of the CNS midline lineage. We have isolated embryonic recessive lethal jing mutations that display genetic interactions in the embryonic CNS midline and trachea, with mutations in the bHLH-PAS genes single-minded and trachealess, and their downstream target genes (slit and breathless). Loss- and gain-of-function jing is associated with defects in CNS axon and tracheal tubule patterning. In jing homozygous mutant embryos, reductions in marker gene expression and inappropriate apoptosis in the CNS midline and trachea establish that jing is essential for the proper differentiation and survival of these lineages. These results establish that jing is a key component of CNS midline and tracheal cell development. Given the similarities between JING and the vertebrate CCAAT-binding protein AEBP2, we propose that jing regulates transcriptional mechanisms in Drosophila embryos and promotes cellular differentiation in ectodermal derivatives.
我们证实,JING锌指转录因子在控制中枢神经系统中线和气管细胞分化中起关键作用。JING转录本和蛋白从第9阶段开始在中枢神经系统中线、气管以及节段性外胚层条带中积累。JING蛋白定位于中枢神经系统中线和气管细胞的细胞核,这意味着它在这些细胞的发育过程中起调节作用。纯合sim突变体中jing-lacZ表达缺失以及异位sim表达诱导jing-lacZ表明,jing是中枢神经系统中线谱系的一部分。我们分离出了胚胎隐性致死的jing突变体,这些突变体在胚胎中枢神经系统中线和气管中表现出与bHLH-PAS基因single-minded和trachealess及其下游靶基因(slit和breathless)的突变存在遗传相互作用。功能缺失和功能获得的jing与中枢神经系统轴突和气管小管模式形成的缺陷有关。在jing纯合突变体胚胎中,标记基因表达的减少以及中枢神经系统中线和气管中不适当的细胞凋亡表明,jing对于这些谱系的正常分化和存活至关重要。这些结果证实,jing是中枢神经系统中线和气管细胞发育的关键组成部分。鉴于JING与脊椎动物CCAAT结合蛋白AEBP2之间的相似性,我们提出jing调节果蝇胚胎中的转录机制,并促进外胚层衍生物中的细胞分化。