Ho Karen S, Suyama Kaye, Fish Matthew, Scott Matthew P
Department of Developmental Biology, Howard Hughes Medical Institute, Clark Center W252, Stanford University School of Medicine, 318 Campus Drive, Stanford, CA 94305-5439, USA.
Development. 2005 Mar;132(6):1401-12. doi: 10.1242/dev.01689.
The mechanism by which the secreted signaling molecule Hedgehog (Hh) elicits concentration-dependent transcriptional responses from cells is not well understood. In the Drosophila wing imaginal disc, Hh signaling differentially regulates the transcription of target genes decapentaplegic (dpp), patched (ptc) and engrailed (en) in a dose-responsive manner. Two key components of the Hh signal transduction machinery are the kinesin-related protein Costal2 (Cos2) and the nuclear protein trafficking regulator Suppressor of Fused [Su(fu)]. Both proteins regulate the activity of the transcription factor Cubitus interruptus (Ci) in response to the Hh signal. We have analyzed the activities of mutant forms of Cos2 in vivo and found effects on differential target gene transcription. A point mutation in the motor domain of Cos2 results in a dominant-negative form of the protein that derepresses dpp but not ptc. Repression of ptc in the presence of the dominant-negative form of Cos2 requires Su(fu), which is phosphorylated in response to Hh in vivo. Overexpression of wild-type or dominant-negative cos2 represses en. Our results indicate that differential Hh target gene regulation can be accomplished by differential sensitivity of Cos2 and Su(Fu) to Hh.
分泌型信号分子刺猬蛋白(Hh)引发细胞浓度依赖性转录反应的机制尚未完全明确。在果蝇翅成虫盘里,Hh信号以剂量响应方式差异性地调控靶基因截瘫蛋白(dpp)、patched(ptc)和engrailed(en)的转录。Hh信号转导机制的两个关键组分是驱动蛋白相关蛋白Costal2(Cos2)和核蛋白运输调节因子Fused抑制因子[Su(fu)]。这两种蛋白均响应Hh信号调节转录因子Cubitus interruptus(Ci)的活性。我们在体内分析了Cos2突变形式的活性,发现其对靶基因差异性转录有影响。Cos2运动结构域中的一个点突变产生了该蛋白的显性负性形式,它能解除对dpp的抑制,但不能解除对ptc的抑制。在存在Cos2显性负性形式的情况下,对ptc的抑制需要Su(fu),而Su(fu)在体内会响应Hh发生磷酸化。野生型或显性负性cos2的过表达会抑制en。我们的结果表明,Hh靶基因的差异性调控可通过Cos2和Su(Fu)对Hh的不同敏感性来实现。