Kirkpatrick Catherine A, Dimitroff Brian D, Rawson Jaime M, Selleck Scott B
The Developmental Biology Center, Department of Pediatrics, Department of Genetics, Cell Biology, and Development, 6-160 Jackson Hall, 321 Church Street SE, The University of Minnesota, Minneapolis, MN 55455, USA.
Dev Cell. 2004 Oct;7(4):513-23. doi: 10.1016/j.devcel.2004.08.004.
Wingless (Wg) is a morphogen required for the patterning of many Drosophila tissues. Several lines of evidence implicate heparan sulfate-modified proteoglycans (HSPGs) such as Dally-like protein (Dlp) in the control of Wg distribution and signaling. We show that dlp is required to limit Wg levels in the matrix, contrary to the expectation from overexpression studies. dlp mutants show ectopic activation of Wg signaling at the presumptive wing margin and a local increase in extracellular Wg levels. dlp somatic cell clones disrupt the gradient of extracellular Wg, producing ectopic activation of high threshold Wg targets but reducing the expression of lower threshold Wg targets where Wg is limiting. Notum encodes a secreted protein that also limits Wg distribution, and genetic interaction studies show that dlp and Notum cooperate to restrict Wg signaling. These findings suggest that modification of an HSPG by a secreted hydrolase can control morphogen levels in the matrix.
无翅基因(Wg)是果蝇许多组织模式形成所必需的一种形态发生素。几条证据线索表明,硫酸乙酰肝素修饰的蛋白聚糖(HSPG),如类达利蛋白(Dlp),参与了Wg分布和信号传导的调控。我们发现,与过表达研究的预期相反,dlp是限制基质中Wg水平所必需的。dlp突变体在假定的翅缘显示Wg信号的异位激活,并且细胞外Wg水平局部升高。dlp体细胞克隆破坏了细胞外Wg的梯度,导致高阈值Wg靶标的异位激活,但在Wg有限的区域降低了低阈值Wg靶标的表达。Notum编码一种也限制Wg分布的分泌蛋白,遗传相互作用研究表明,dlp和Notum协同作用以限制Wg信号传导。这些发现表明,一种分泌性水解酶对HSPG的修饰可以控制基质中的形态发生素水平。