Schmitt Adam M, Shi Jun, Wolf Alex M, Lu Chin-Chun, King Leslie A, Zou Yimin
Department of Neurobiology, Pharmacology and Physiology, University of Chicago, Chicago, Illinois 60637, USA.
Nature. 2006 Jan 5;439(7072):31-7. doi: 10.1038/nature04334.
Computational modelling has suggested that at least two counteracting forces are required for establishing topographic maps. Ephrin-family proteins are required for both anterior-posterior and medial-lateral topographic mapping, but the opposing forces have not been well characterized. Wnt-family proteins are recently discovered axon guidance cues. We find that Wnt3 is expressed in a medial-lateral decreasing gradient in chick optic tectum and mouse superior colliculus. Retinal ganglion cell (RGC) axons from different dorsal-ventral positions showed graded and biphasic response to Wnt3 in a concentration-dependent manner. Wnt3 repulsion is mediated by Ryk, expressed in a ventral-to-dorsal decreasing gradient, whereas attraction of dorsal axons at lower Wnt3 concentrations is mediated by Frizzled(s). Overexpression of Wnt3 in the lateral tectum repelled the termination zones of dorsal RGC axons in vivo. Expression of a dominant-negative Ryk in dorsal RGC axons caused a medial shift of the termination zones, promoting medially directed interstitial branches and eliminating laterally directed branches. Therefore, a classical morphogen, Wnt3, acting as an axon guidance molecule, plays a role in retinotectal mapping along the medial-lateral axis, counterbalancing the medial-directed EphrinB1-EphB activity.
计算模型表明,建立地形图至少需要两种相互抵消的力量。Ephrin家族蛋白对于前后和内外侧地形图的形成都是必需的,但相反的力量尚未得到很好的表征。Wnt家族蛋白是最近发现的轴突导向线索。我们发现Wnt3在鸡视顶盖和小鼠上丘中以内外侧递减梯度表达。来自不同背腹位置的视网膜神经节细胞(RGC)轴突对Wnt3呈浓度依赖性的分级双相反应。Wnt3的排斥作用由Ryk介导,Ryk以腹侧到背侧递减梯度表达,而在较低Wnt3浓度下背侧轴突的吸引作用由卷曲蛋白介导。在体外用Wnt3过表达外侧顶盖会排斥背侧RGC轴突的终止区。在背侧RGC轴突中表达显性负性Ryk会导致终止区向内侧移位,促进向内侧的中间分支并消除向外侧的分支。因此,经典的形态发生素Wnt3作为轴突导向分子,在沿内外侧轴的视网膜顶盖映射中发挥作用,平衡向内侧的EphrinB1-EphB活性。