Bachmann A, Knust E
Institut für Genetik, Heinrich-Heine Universität Düsseldorf, Universitätsstr. 1, 40225, Düsseldorf, Germany.
Mech Dev. 1998 Aug;76(1-2):67-78. doi: 10.1016/s0925-4773(98)00114-2.
The product of the Drosophila gene Serrate acts as a short-range signal during wing development to induce the organising centre at the dorsal/ventral compartment boundary, from which growth and patterning of the wing is controlled. Regulatory elements reflecting the early Serrate expression in the dorsal compartment of the wing disc have recently been confined to a genomic fragment in the 5'-upstream region of the gene. Here we present data to suggest that this fragment responds to various positive and negative inputs required for the early Serrate expression. First, activation and maintenance of expression in the dorsal compartment of the wing discs of second and early third instar larvae depends on apterous, as revealed by reporter gene expression in discs either lacking or ectopically expressing apterous. Second, transcriptional downregulation during third larval instar is mediated by hiiragi. Finally, this regulatory element responds to Delta signalling in a nonautonomous way to maintain Serrate expression along the dorsal margin. The results clearly show that some of the previously described transactivators of Serrate protein expression, e.g. fringe, act on elements required for later aspects of Serrate expression.
果蝇基因锯齿状蛋白的产物在翅膀发育过程中作为一种短程信号,诱导背/腹隔室边界处的组织中心,翅膀的生长和模式形成由此控制。反映翅膀盘背隔室中锯齿状蛋白早期表达的调控元件最近被定位到该基因5'上游区域的一个基因组片段。我们在此提供的数据表明,该片段对锯齿状蛋白早期表达所需的各种正性和负性输入作出反应。首先,如在缺乏或异位表达无翅基因的翅盘中报告基因表达所显示的,第二和早期第三龄幼虫翅盘背隔室中表达的激活和维持依赖于无翅基因。其次,第三龄幼虫期的转录下调由平木介导。最后,该调控元件以非自主方式响应Delta信号,以维持沿背缘锯齿状蛋白的表达。结果清楚地表明,一些先前描述的锯齿状蛋白表达的反式激活因子,如边缘蛋白,作用于锯齿状蛋白表达后期所需的元件。