Bermingham J R, Martinez-Arias A, Petitt M G, Scott M P
Howard Hughes Medical Institute, University of Colorado, Boulder 80309-0347.
Development. 1990 Jul;109(3):553-66. doi: 10.1242/dev.109.3.553.
The homeotic genes of Drosophila control the differentiation of segments during development. Mutations in these genes cause one or more segments to develop structures normally found elsewhere in the organism. Several studies have shown that the spatial patterns of homeotic gene transcription are highly complex, and that these precise patterns of transcription are critical to normal development. The homeotic gene Antennapedia (Antp), a member of the Antennapedia Complex, is required for the correct differentiation of thoracic segments in both embryos and adults. The patterns of total Antp transcript and protein accumulation have been described in detail, but the contribution of each promoter to the overall pattern in embryos has not been reported. We have examined in detail the spatial distribution of transcripts from each of the Antp promoters in both embryo sections and whole embryos by in situ hybridization using promoter-specific probes. We show that the transcripts from each of the two promoters accumulate in distinct, but overlapping patterns during embryogenesis. The results demonstrate that the two Antp promoters are differentially regulated in embryos and provide a basis for examining the regulation of the two promoters and characterizing more fully the function of Antp during embryogenesis. In addition, we have examined the regulation of each of the Antp promoters by genes of the bithorax complex (BX-C). We show that in BX-C- embryos both promoters are derepressed in the abdomen.
果蝇的同源异型基因在发育过程中控制体节的分化。这些基因的突变会导致一个或多个体节发育出通常在生物体其他部位出现的结构。多项研究表明,同源异型基因转录的空间模式高度复杂,而且这些精确的转录模式对正常发育至关重要。同源异型基因触角足基因(Antp)是触角足复合体的成员之一,在胚胎和成虫的胸节正确分化过程中是必需的。总的Antp转录本和蛋白质积累模式已被详细描述,但每个启动子对胚胎中整体模式的贡献尚未见报道。我们使用启动子特异性探针,通过原位杂交详细研究了胚胎切片和整个胚胎中每个Antp启动子转录本的空间分布。我们发现,在胚胎发育过程中,两个启动子的转录本以不同但重叠的模式积累。结果表明,两个Antp启动子在胚胎中受到不同的调控,为研究两个启动子的调控以及更全面地描述Antp在胚胎发育过程中的功能提供了基础。此外,我们还研究了双胸复合体(BX-C)的基因对每个Antp启动子的调控。我们发现,在BX-C突变体胚胎中,两个启动子在腹部均被去抑制。