University of California, San Diego, La Jolla, CA 92093, USA.
J Neurosci. 2010 Nov 24;30(47):16053-64. doi: 10.1523/JNEUROSCI.4508-10.2010.
Monoaminergic neurons [serotonergic (5-HT) and dopaminergic (mdDA)] in the brainstem project axons along the anterior-posterior axis. Despite their important physiological functions and implication in disease, the molecular mechanisms that dictate the formation of these projections along the anterior-posterior axis remain unknown. Here we reveal a novel requirement for Wnt/planar cell polarity signaling in the anterior-posterior organization of the monoaminergic system. We find that 5-HT and mdDA axons express the core planar cell polarity components Frizzled3, Celsr3, and Vangl2. In addition, monoaminergic projections show anterior-posterior guidance defects in Frizzled3, Celsr3, and Vangl2 mutant mice. The only known ligands for planar cell polarity signaling are Wnt proteins. In culture, Wnt5a attracts 5-HT but repels mdDA axons, and Wnt7b attracts mdDA axons. However, mdDA axons from Frizzled3 mutant mice are unresponsive to Wnt5a and Wnt7b. Both Wnts are expressed in gradients along the anterior-posterior axis, consistent with their role as directional cues. Finally, Wnt5a mutants show transient anterior-posterior guidance defects in mdDA projections. Furthermore, we observe during development that the cell bodies of migrating descending 5-HT neurons eventually reorient along the direction of their axons. In Frizzled3 mutants, many 5-HT and mdDA neuron cell bodies are oriented abnormally along the direction of their aberrant axon projections. Overall, our data suggest that Wnt/planar cell polarity signaling may be a global anterior-posterior guidance mechanism that controls axonal and cellular organization beyond the spinal cord.
脑干部位的单胺能神经元(5-羟色胺能[5-HT]和多巴胺能[mdDA])沿前后轴投射轴突。尽管它们具有重要的生理功能,并与疾病有关,但决定这些投射沿前后轴形成的分子机制尚不清楚。在这里,我们揭示了 Wnt/平面细胞极性信号在单胺能系统的前后组织中的新需求。我们发现 5-HT 和 mdDA 轴突表达核心平面细胞极性成分 Frizzled3、Celsr3 和 Vangl2。此外,在 Frizzled3、Celsr3 和 Vangl2 突变小鼠中,单胺能投射表现出前后导向缺陷。平面细胞极性信号的唯一已知配体是 Wnt 蛋白。在培养物中,Wnt5a 吸引 5-HT 但排斥 mdDA 轴突,而 Wnt7b 吸引 mdDA 轴突。然而,Frizzled3 突变小鼠的 mdDA 轴突对 Wnt5a 和 Wnt7b 无反应。两种 Wnt 都沿前后轴呈梯度表达,与其作为定向线索的作用一致。最后,Wnt5a 突变体在 mdDA 投射中表现出短暂的前后导向缺陷。此外,我们在发育过程中观察到,移行性下行 5-HT 神经元的细胞体最终沿其轴突的方向重新定向。在 Frizzled3 突变体中,许多 5-HT 和 mdDA 神经元细胞体沿其异常轴突投射的方向异常定向。总体而言,我们的数据表明 Wnt/平面细胞极性信号可能是一种全局的前后导向机制,它控制着脊髓以外的轴突和细胞组织。