Shimell M J, Simon J, Bender W, O'Connor M B
Department of Molecular Biology and Biochemistry, University of California, Irvine 92717.
Science. 1994 May 13;264(5161):968-71. doi: 10.1126/science.7909957.
In Drosophila, the misexpression or altered activity of genes from the bithorax complex results in homeotic transformations. One of these genes, abd-A, normally specifies the identity of the second through fourth abdominal segments (A2 to A4). In the dominant Hyperabdominal mutations (Hab), portions of the third thoracic segment (T3) are transformed toward A2 as the result of ectopic abd-A expression. Sequence analysis and deoxyribonuclease I footprinting demonstrate that the misexpression of abd-A in two independent Hab mutations results from the same single base change in a binding site for the gap gene Krüppel protein. These results establish that the spatial limits of the homeotic genes are directly regulated by gap gene products.
在果蝇中,来自双胸复合体的基因错误表达或活性改变会导致同源异型转化。其中一个基因abd - A,通常决定第二至第四腹节(A2至A4)的特征。在显性的超腹突变(Hab)中,由于异位表达abd - A,第三胸节(T3)的部分结构会向A2转化。序列分析和脱氧核糖核酸酶I足迹法表明,在两个独立的Hab突变中,abd - A的错误表达是由间隙基因Krüppel蛋白结合位点上的同一个单碱基变化引起的。这些结果表明,同源异型基因的空间界限直接受间隙基因产物的调控。