Micchelli C A, Rulifson E J, Blair S S
Department of Zoology, University of Wisconsin, Madison 53706, USA.
Development. 1997 Apr;124(8):1485-95. doi: 10.1242/dev.124.8.1485.
We have investigated the role of the Notch and Wingless signaling pathways in the maintenance of wing margin identity through the study of cut, a homeobox-containing transcription factor and a late-arising margin-specific marker. By late third instar, a tripartite domain of gene expression can be identified about the dorsoventral compartment boundary, which marks the presumptive wing margin. A central domain of cut- and wingless-expressing cells are flanked on the dorsal and ventral side by domains of cells expressing elevated levels of the Notch ligands Delta and Serrate. We show first that cut acts to maintain margin wingless expression, providing a potential explanation of the cut mutant phenotype. Next, we examined the regulation of cut expression. Our results indicate that Notch, but not Wingless signaling, is autonomously required for cut expression. Rather, Wingless is required indirectly for cut expression; our results suggest this requirement is due to the regulation by wingless of Delta and Serrate expression in cells flanking the cut and wingless expression domains. Finally, we show that Delta and Serrate play a dual role in the regulation of cut and wingless expression. Normal, high levels of Delta and Serrate can trigger cut and wingless expression in adjacent cells lacking Delta and Serrate. However, high levels of Delta and Serrate also act in a dominant negative fashion, since cells expressing such levels cannot themselves express cut or wingless. We propose that the boundary of Notch ligand along the normal margin plays a similar role as part of a dynamic feedback loop that maintains the tripartite pattern of margin gene expression.
我们通过对cut(一种含同源异型框的转录因子及后期出现的边缘特异性标记物)的研究,调查了Notch和Wingless信号通路在维持翅边缘特征中的作用。到三龄幼虫后期,可在背腹侧隔室边界周围识别出一个基因表达的三方结构域,该结构域标记了假定的翅边缘。表达cut和wingless的细胞的中央结构域在背侧和腹侧分别由表达Notch配体Delta和Serrate水平升高的细胞结构域所环绕。我们首先表明,cut起到维持边缘wingless表达的作用,这为cut突变体表型提供了一种可能的解释。接下来,我们研究了cut表达的调控。我们的结果表明,Notch信号通路而非Wingless信号通路是cut表达自主所需的。相反,Wingless信号通路是cut表达间接所需;我们的结果表明,这种需求是由于wingless对位于cut和wingless表达结构域两侧细胞中Delta和Serrate表达的调控。最后,我们表明Delta和Serrate在调控cut和wingless表达中发挥双重作用。正常的高水平Delta和Serrate可在缺乏Delta和Serrate的相邻细胞中触发cut和wingless表达。然而,高水平的Delta和Serrate也以显性负性方式起作用,因为表达这种水平的细胞自身不能表达cut或wingless。我们提出,沿着正常边缘的Notch配体边界作为动态反馈回路的一部分发挥类似作用,该回路维持边缘基因表达的三方模式。