Hanes S D, Brent R
Department of Molecular Biology, Massachusetts General Hospital, Boston 02114.
Cell. 1989 Jun 30;57(7):1275-83. doi: 10.1016/0092-8674(89)90063-9.
Formation of anterior structures in the Drosophila embryo requires the product of the gene bicoid. The bicoid protein contains a homeodomain and may exert its effects in early development by regulating transcription of the gap gene, hunchback (hb). Consistent with this view, we have demonstrated that DNA-bound Bicoid fusion proteins stimulate gene expression. We used the gene activation phenotype in yeast to study DNA recognition by the Bicoid homeodomain. We found that a single amino acid replacement at position 9 of the recognition helix was sufficient to switch the DNA specificity of the Bicoid protein. The altered specificity Bicoid mutants recognized DNA sites bound by Ultrabithorax, fushi tarazu, and other related homeo-domain proteins. Our results suggest that DNA specificity in Bicoid and Antennapedia class proteins is determined by recognition helix residue 9.
果蝇胚胎中前部结构的形成需要双胸基因的产物。双胸蛋白含有一个同源异型结构域,可能通过调节间隙基因驼背(hb)的转录在早期发育中发挥作用。与这一观点一致,我们已经证明与DNA结合的双胸融合蛋白能刺激基因表达。我们利用酵母中的基因激活表型来研究双胸同源异型结构域对DNA的识别。我们发现,识别螺旋第9位的单个氨基酸替换足以改变双胸蛋白的DNA特异性。特异性改变的双胸突变体识别由超双胸、腹节缺刻及其他相关同源结构域蛋白所结合的DNA位点。我们的结果表明,双胸蛋白和触角足蛋白家族中蛋白质的DNA特异性是由识别螺旋的第9位残基决定的。