Faucheux M, Roignant J-Y, Netter S, Charollais J, Antoniewski C, Théodore L
Laboratoire d'Embryologie Moléculaire et Expérimentale, Chromatine et Développement, CNRS ESA 8080, Université Paris Sud, Orsay, France.
Mol Cell Biol. 2003 Feb;23(4):1181-95. doi: 10.1128/MCB.23.4.1181-1195.2003.
Polycomb and trithorax group genes maintain the appropriate repressed or activated state of homeotic gene expression throughout Drosophila melanogaster development. We have previously identified the batman gene as a Polycomb group candidate since its function is necessary for the repression of Sex combs reduced. However, our present genetic analysis indicates functions of batman in both activation and repression of homeotic genes. The 127-amino-acid Batman protein is almost reduced to a BTB/POZ domain, an evolutionary conserved protein-protein interaction domain found in a large protein family. We show that this domain is involved in the interaction between Batman and the DNA binding GAGA factor encoded by the Trithorax-like gene. The GAGA factor and Batman codistribute on polytene chromosomes, coimmunoprecipitate from nuclear embryonic and larval extracts, and interact in the yeast two-hybrid assay. Batman, together with the GAGA factor, binds to MHS-70, a 70-bp fragment of the bithoraxoid Polycomb response element. This binding, like that of the GAGA factor, requires the presence of d(GA)n sequences. Together, our results suggest that batman belongs to a subset of the Polycomb/trithorax group of genes that includes Trithorax-like, whose products are involved in both activation and repression of homeotic genes.
在黑腹果蝇的整个发育过程中,多梳蛋白和三胸节基因维持同源异型基因表达的适当抑制或激活状态。我们之前已将蝙蝠侠基因鉴定为一个多梳蛋白组候选基因,因为其功能对于抑制减少的性梳是必需的。然而,我们目前的遗传分析表明蝙蝠侠基因在同源异型基因的激活和抑制中均发挥作用。由127个氨基酸组成的蝙蝠侠蛋白几乎缩减为一个BTB/POZ结构域,这是在一个大型蛋白家族中发现的进化保守的蛋白质-蛋白质相互作用结构域。我们发现该结构域参与蝙蝠侠与由类三胸节基因编码的DNA结合GAGA因子之间的相互作用。GAGA因子和蝙蝠侠在多线染色体上共分布,从胚胎和幼虫的核提取物中共免疫沉淀,并在酵母双杂交试验中相互作用。蝙蝠侠与GAGA因子一起结合到双胸样多梳反应元件的一个70bp片段MHS-70上。这种结合与GAGA因子的结合一样,需要d(GA)n序列的存在。总之,我们的结果表明蝙蝠侠基因属于多梳蛋白/三胸节基因组的一个子集,该子集包括类三胸节基因,其产物参与同源异型基因的激活和抑制。