Howard Hughes Medical Institute, The Solomon H. Snyder Department of Neuroscience, The Johns Hopkins University School of Medicine, Baltimore, Maryland, United States of America.
PLoS One. 2013 Apr 30;8(4):e63207. doi: 10.1371/journal.pone.0063207. Print 2013.
In the vertebrate retina, the formation of neural circuits within discrete laminae is critical for the establishment of retinal visual function. Precise formation of retinal circuits requires the coordinated actions of adhesive and repulsive molecules, including repulsive transmembrane semaphorins (Sema6A, Sema5A, and Sema5B). These semaphorins signal through different Plexin A (PlexA) receptors, thereby regulating distinct aspects of retinal circuit assembly. Here, we investigate the physiological roles of three Class 6 transmembrane semaphorins (Sema6B, Sema6C, and Sema6D), previously identified as PlexA receptor ligands in non-retinal tissues, in mammalian retinal development. We performed expression analysis and also phenotypic analyses of mice that carry null mutations in each of genes encoding these proteins using a broad range of inner and outer retinal markers. We find that these Class 6 semaphorins are uniquely expressed throughout postnatal retinal development in specific domains and cell types of the developing retina. However, we do not observe defects in stereotypical lamina-specific neurite stratification of retinal neuron subtypes in Sema6B-/- or Sema6C-/-; Sema6D-/- retinas. These findings indicate these Class 6 transmembrane semaphorins are unlikely to serve as major PlexA receptor ligands for the assembly of murine retinal circuit laminar organization.
在脊椎动物的视网膜中,离散层内神经回路的形成对于建立视网膜视觉功能至关重要。视网膜回路的精确形成需要黏附分子和排斥分子的协调作用,包括排斥性跨膜信号素(Sema6A、Sema5A 和 Sema5B)。这些信号素通过不同的 Plexin A(PlexA)受体发出信号,从而调节视网膜回路组装的不同方面。在这里,我们研究了先前在非视网膜组织中被鉴定为 PlexA 受体配体的三种 6 类跨膜信号素(Sema6B、Sema6C 和 Sema6D)在哺乳动物视网膜发育中的生理作用。我们进行了表达分析,并使用广泛的内、外视网膜标记物对携带这些基因缺失突变的小鼠进行了表型分析。我们发现这些 6 类信号素在发育中的视网膜的特定区域和细胞类型中,在出生后的视网膜发育过程中特异性表达。然而,我们并没有观察到 Sema6B-/-或 Sema6C-/-;Sema6D-/-视网膜中特定亚型视网膜神经元的典型层特异性神经突分层出现缺陷。这些发现表明,这些 6 类跨膜信号素不太可能作为组装小鼠视网膜回路层状组织的主要 PlexA 受体配体。