Guangdong-Hong Kong-Macau Institute of CNS Regeneration, Jinan University, Guangzhou 510632, China;
Department of Neuroanatomy, Heidelberg University, D-69120 Heidelberg, Germany;
Proc Natl Acad Sci U S A. 2014 Jul 22;111(29):E2996-3004. doi: 10.1073/pnas.1402105111. Epub 2014 Jul 7.
Celsr3 and Fzd3, members of "core planar cell polarity" (PCP) genes, were shown previously to control forebrain axon guidance and wiring by acting in axons and/or guidepost cells. Here, we show that Celsr2 acts redundantly with Celsr3, and that their combined mutation mimics that of Fzd3. The phenotypes generated upon inactivation of Fzd3 in different forebrain compartments are similar to those in conditional Celsr2-3 mutants, indicating that Fzd3 and Celsr2-3 act in the same population of cells. Inactivation of Celsr2-3 or Fzd3 in thalamus does not affect forebrain wiring, and joint inactivation in cortex and thalamus adds little to cortical inactivation alone in terms of thalamocortical projections. On the other hand, joint inactivation perturbs strongly the formation of the barrel field, which is unaffected upon single cortical or thalamic inactivation, indicating a role for interactions between thalamic axons and cortical neurons in cortical arealization. Unexpectedly, forebrain wiring is normal in mice defective in Vangl1 and Vangl2, showing that, contrary to epithelial PCP, axon guidance can be Vangl independent in some contexts. Our results suggest that Celsr2-3 and Fzd3 regulate axonal navigation in the forebrain by using mechanisms different from classical epithelial PCP, and require interacting partners other than Vangl1-2 that remain to be identified.
Celsr3 和 Fzd3 是“核心平面细胞极性”(PCP)基因的成员,先前已被证明通过在轴突和/或导向细胞中作用来控制大脑前脑轴突导向和布线。在这里,我们表明 Celsr2 与 Celsr3 冗余,并且它们的联合突变模拟了 Fzd3 的突变。在不同的大脑前脑隔室中失活 Fzd3 所产生的表型与条件性 Celsr2-3 突变体的表型相似,表明 Fzd3 和 Celsr2-3 在前脑的同一细胞群中起作用。在丘脑中失活 Celsr2-3 或 Fzd3 不会影响大脑前脑的布线,并且在皮层和丘脑中的联合失活在丘脑皮质投射方面与单独的皮层失活相比增加很少。另一方面,联合失活强烈扰乱了桶状皮层的形成,而单独的皮层或丘脑失活不会影响其形成,表明丘脑轴突和皮层神经元之间的相互作用在皮层区域化中起作用。出乎意料的是,在 Vangl1 和 Vangl2 缺陷的小鼠中,大脑前脑的布线是正常的,这表明与上皮 PCP 相反,在某些情况下,轴突导向可以不依赖于 Vangl。我们的结果表明,Celsr2-3 和 Fzd3 通过使用不同于经典上皮 PCP 的机制来调节大脑前脑的轴突导航,并且需要尚未确定的其他相互作用伙伴来取代 Vangl1-2。