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Role of GPR55 during Axon Growth and Target Innervation

机译:GPR55在轴突生长和目标神经支配中的作用。

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摘要

Guidance molecules regulate the navigation of retinal ganglion cell (RGC) projections toward targets in the visual thalamus. In this study, we demonstrate that the G-protein-coupled receptor 55 (GPR55) is expressed in the retina during development, and regulates growth cone (GC) morphology and axon growth. In vitro, neurons obtained from gpr55 knock-out (gpr55-/-) mouse embryos have smaller GCs, less GC filopodia, and have a decreased outgrowth compared with gpr55+/+ neurons. When gpr55+/+ neurons were treated with GPR55 agonists, lysophosphatidylinositol (LPI) and O-1602, we observed a chemo-attractive effect and an increase in GC size and filopodia number. In contrast, cannabidiol (CBD) decreased the GC size and filopodia number inducing chemo-repulsion. In absence of the receptor (gpr55-/-), no pharmacologic effects of the GPR55 ligands were observed. In vivo, compared to their wild-type (WT) littermates, gpr55-/- mice revealed a decreased branching in the dorsal terminal nucleus (DTN) and a lower level of eye-specific segregation of retinal projections in the superior colliculus (SC) and in the dorsal lateral geniculate nucleus (dLGN). Moreover, a single intraocular injection of LPI increased branching in the DTN, whereas treatment with CBD, an antagonist of GPR55, decreased it. These results indicate that GPR55 modulates the growth rate and the targets innervation of retinal projections and highlight, for the first time, an important role of GPR55 in axon refinement during development.
机译:指导分子调节视网膜神经节细胞(RGC)投影向视觉丘脑中目标的导航。在这项研究中,我们证明了G蛋白偶联受体55(GPR55)在发育过程中在视网膜中表达,并调节生长锥(GC)形态和轴突生长。在体外,与gpr55 + / + -/-)小鼠胚胎中获得的神经元具有较小的GC,较少的GC丝状伪足,并且其生长减少。 >神经元。当使用GPR55激动剂,溶血磷脂酰肌醇(LPI)和O-1602处理gpr55 + / + 神经元时,我们观察到了化学吸引作用以及GC大小和丝状伪足数目的增加。相比之下,大麻二酚(CBD)减少了引起化学排斥的GC大小和丝状伪足数目。在没有受体(gpr55 -/-)的情况下,未观察到GPR55配体的药理作用。在体内,与野生型(WT)同窝幼仔相比,gpr55 -/-小鼠显示出背末端核(DTN)的分支减少,并且视网膜投影的眼特异性隔离水平降低在上丘(SC)和背外侧膝状核(dLGN)中。此外,LPI的单次眼内注射增加了DTN中的分支,而GPR55拮抗剂CBD的治疗降低了DTN中的分支。这些结果表明,GPR55调节视网膜投影的生长速度和靶标神经支配,并首次突显了GPR55在发育过程中轴突细化中的重要作用。

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