Walz A, McFarlane S, Brickman Y G, Nurcombe V, Bartlett P F, Holt C E
Department of Biology 0366, University of California San Diego, La Jolla 92093-0366, USA.
Development. 1997 Jun;124(12):2421-30. doi: 10.1242/dev.124.12.2421.
Heparan sulfate (HS) is abundant in the developing brain and is a required co-factor for many types of fibroblast growth factor (FGF) signaling in vitro. We report that some HSs, when added exogenously to the developing Xenopus optic pathway, severely disrupt target recognition causing axons from the retina to bypass their primary target, the optic tectum. Significantly, HS sidechains from a neuroepithelial perlecan variant that preferentially bind FGF-2, HS(FGF-2), cause aberrant targeting, whereas those that preferentially bind FGF-1 do not. Charge-matched fragments of HS(FGF-2) show that the mistargeting activity associates with the FGF-binding fragments. Heparitinase removal of native HSs at the beginning of optic tract formation retards retinal axon elongation; addition of FGF-2 restores axon extension but axons lose directionality. Late HS removal, after axons have extended through the tract, elicits a tectal bypass phenotype indicating a growth promoting and guidance function for native HSs. Our results demonstrate that different HS sidechains from the same core protein differentially affect axon growth in vivo, possibly due to their distinct FGF-binding preferences, and suggest that growth factors and HSs are important partners in regulating axon growth and guidance in the developing visual system.
硫酸乙酰肝素(HS)在发育中的大脑中含量丰富,并且在体外是多种成纤维细胞生长因子(FGF)信号传导所必需的辅助因子。我们报道,一些HSs在体外添加到发育中的非洲爪蟾视觉通路时,会严重破坏靶标识别,导致视网膜轴突绕过其主要靶标——视顶盖。值得注意的是,来自优先结合FGF-2的神经上皮基底膜聚糖变体的HS侧链,即HS(FGF-2),会导致异常靶向,而那些优先结合FGF-1的侧链则不会。HS(FGF-2)的电荷匹配片段表明,错误靶向活性与FGF结合片段相关。在视束形成开始时用肝素酶去除天然HSs会延迟视网膜轴突的伸长;添加FGF-2可恢复轴突延伸,但轴突会失去方向性。在轴突延伸穿过视束后晚期去除HS,会引发视顶盖绕过表型,表明天然HSs具有促进生长和引导功能。我们的结果表明,来自同一核心蛋白的不同HS侧链在体内对轴突生长有不同影响,这可能是由于它们不同的FGF结合偏好,并表明生长因子和HSs是调节发育中的视觉系统中轴突生长和引导的重要伙伴。