Klingler Esther, Martin Pierre-Marie, Garcia Marta, Moreau-Fauvarque Caroline, Falk Julien, Chareyre Fabrice, Giovannini Marco, Chédotal Alain, Girault Jean-Antoine, Goutebroze Laurence
INSERM, UMR-S 839, Paris F-75005, France Sorbonne Universités, UPMC Univ Paris 06, Paris F-75005, France Institut du Fer à Moulin, Paris F-75005, France.
Sorbonne Universités, UPMC Univ Paris 06, Paris F-75005, France Institut de la Vision, INSERM, UMR-S 968, Paris F-75012, France CNRS, UMR 7210, Paris F-75012, France.
Development. 2015 Jun 1;142(11):2026-36. doi: 10.1242/dev.119248. Epub 2015 May 7.
SCHIP1 is a cytoplasmic partner of cortical cytoskeleton ankyrins. The IQCJ-SCHIP1 isoform is a component of axon initial segments and nodes of Ranvier of mature axons in peripheral and central nervous systems, where it associates with membrane complexes comprising cell adhesion molecules. SCHIP1 is also expressed in the mouse developing central nervous system during embryonic stages of active axonogenesis. Here, we identify a new and early role for SCHIP1 during axon development and establishment of the anterior commissure (AC). The AC is composed of axons from the piriform cortex, the anterior olfactory nucleus and the amygdala. Schip1 mutant mice displayed early defects in AC development that might result from impaired axon growth and guidance. In addition, mutant mice presented a reduced thickness of the piriform cortex, which affected projection neurons in layers 2/3 and was likely to result from cell death rather than from impairment of neuron generation or migration. Piriform cortex neurons from E14.5 mutant embryos displayed axon initiation/outgrowth delay and guidance defects in vitro. The sensitivity of growth cones to semaphorin 3F and Eph receptor B2, two repulsive guidance cues crucial for AC development, was increased, providing a possible basis for certain fiber tract alterations. Thus, our results reveal new evidence for the involvement of cortical cytoskeleton-associated proteins in the regulation of axon development and their importance for the formation of neuronal circuits.
SCHIP1是皮质细胞骨架锚蛋白的胞质伴侣。IQCJ - SCHIP1亚型是外周和中枢神经系统中成熟轴突的轴突起始段和郎飞结的组成部分,在那里它与包含细胞粘附分子的膜复合物相关联。SCHIP1在轴突活跃发生的胚胎阶段的小鼠发育中的中枢神经系统中也有表达。在这里,我们确定了SCHIP1在轴突发育和前连合(AC)建立过程中的一个新的早期作用。AC由来自梨状皮质、前嗅核和杏仁核的轴突组成。Schip1突变小鼠在AC发育中表现出早期缺陷,这可能是由于轴突生长和导向受损所致。此外,突变小鼠的梨状皮质厚度减小,这影响了2/3层的投射神经元,并且可能是由细胞死亡而非神经元生成或迁移受损导致的。来自E14.5突变胚胎的梨状皮质神经元在体外表现出轴突起始/生长延迟和导向缺陷。生长锥对信号素3F和Eph受体B2这两种对AC发育至关重要的排斥性导向线索的敏感性增加,为某些纤维束改变提供了可能的基础。因此,我们的结果揭示了皮质细胞骨架相关蛋白参与轴突发育调控的新证据及其对神经回路形成的重要性。