Zhao J J, Lazzarini R A, Pick L
Brookdale Center for Molecular Biology, Mount Sinai School of Medicine, New York, New York 10029-6574.
Genes Dev. 1993 Mar;7(3):343-54. doi: 10.1101/gad.7.3.343.
To test whether the mouse Hox-1.3 gene is a cognate of the Drosophila Sex combs reduced (Scr) gene, we inserted a hsp 70-Hox-1.3 fusion gene into the Drosophila genome. Transgenic flies displayed Scr-like homeotic transformations after ectopic expression of Hox-1.3 induced by heat shock. In larvae, the thoracic segments T2 and T3 are transformed toward T1. In adults, head structures are dramatically disrupted, including transformation of antenna towards leg. Transformations are not the result of ectopic activation of the endogenous Scr gene. Rather, Hox-1.3 appears to directly regulate Scr target genes, as demonstrated by the ectopic activation of fork head by Hox-1.3. The results suggest that mouse Hox-1.3 cannot only substitute functionally for Drosophila Scr in the determination of external structures but also can participate in the regulatory hierarchy of insect organogenesis.
为了检测小鼠Hox-1.3基因是否是果蝇性梳减少(Scr)基因的同源基因,我们将一个热休克蛋白70(hsp 70)-Hox-1.3融合基因插入果蝇基因组。热休克诱导Hox-1.3异位表达后,转基因果蝇表现出类似Scr的同源异型转化。在幼虫中,胸段T2和T3向T1转化。在成虫中,头部结构受到显著破坏,包括触角向腿的转化。这些转化不是内源性Scr基因异位激活的结果。相反,Hox-1.3似乎直接调控Scr靶基因,如Hox-1.3对叉头蛋白的异位激活所示。结果表明,小鼠Hox-1.3不仅在外部结构的决定上能在功能上替代果蝇Scr,还能参与昆虫器官发生的调控层次。