Robertson Lisa K, Bowling Dana B, Mahaffey James P, Imiolczyk Barbara, Mahaffey James W
Department of Genetics, Campus Box 7614, North Carolina State University, Raleigh, NC 27695-7614, USA.
Development. 2004 Jun;131(12):2781-9. doi: 10.1242/dev.01159. Epub 2004 May 13.
During animal development, the HOM-C/HOX proteins direct axial patterning by regulating region-specific expression of downstream target genes. Though much is known about these pathways, significant questions remain regarding the mechanisms of specific target gene recognition and regulation, and the role of co-factors. From our studies of the gnathal and trunk-specification proteins Disconnected (DISCO) and Teashirt (TSH), respectively, we present evidence for a network of zinc-finger transcription factors that regionalize the Drosophila embryo. Not only do these proteins establish specific regions within the embryo, but their distribution also establishes where specific HOM-C proteins can function. In this manner, these factors function in parallel to the HOM-C proteins during axial specification. We also show that in tsh mutants, disco is expressed in the trunk segments, probably explaining the partial trunk to head transformation reported in these mutants, but more importantly demonstrating interactions between members of this regionalization network. We conclude that a combination of regionalizing factors, in concert with the HOM-C proteins, promotes the specification of individual segment identity.
在动物发育过程中,HOM-C/HOX蛋白通过调节下游靶基因的区域特异性表达来指导轴向模式形成。尽管对这些途径已有很多了解,但关于特定靶基因识别和调控的机制以及辅助因子的作用仍存在重大问题。通过分别对颚部和躯干特化蛋白Disconnected(DISCO)和Teashirt(TSH)的研究,我们提供了一个锌指转录因子网络使果蝇胚胎区域化的证据。这些蛋白不仅在胚胎内建立特定区域,而且它们的分布还确定了特定HOM-C蛋白能够发挥作用的位置。通过这种方式,这些因子在轴向特化过程中与HOM-C蛋白并行发挥作用。我们还表明,在tsh突变体中,disco在躯干节段中表达,这可能解释了这些突变体中报道的部分躯干向头部的转变,但更重要的是证明了这个区域化网络成员之间的相互作用。我们得出结论,区域化因子与HOM-C蛋白协同作用,促进了个体节段身份的特化。