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首页> 外文期刊>The European Journal of Neuroscience >Differential expression and cellular localization of doublecortin in the developing rat retina.
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Differential expression and cellular localization of doublecortin in the developing rat retina.

机译:Doublecortin在发育中的大鼠视网膜中的差异表达和细胞定位。

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摘要

Doublecortin is 40 kDa microtubule-associated phosphoprotein required for neuronal migration and differentiation in various regions of the developing central nervous system. We have investigated the expression and cellular localization of doublecortin in the developing rat retina using immunocytochemistry and Western blot analysis. The expression of doublecortin was high from embryonic day 18 (E18) until E20 and was low during the postnatal period. The doublecortin immunoreactivity first appeared in a few radially orientated cells in the mantle zone of the primitive retina at E15. From E16 onward, the immunoreactivity appeared in two different regions: the inner part of the retina and middle of the neuroblastic layer. In the inner part, the somata of cells in the ganglion cell layer, in the distal row of the neuroblastic layer and profiles in the inner plexiform layer showed doublecortin immunoreactivity up to postnatal day 1 (P1). Afterwards, the doublecortin immunoreactivity persisted in the inner plexiform layer until P15, although the intensity decreased gradually with the maturation of the retina. In the middle of the neuroblastic layer, doublecortin immunoreactivity appeared in the radially orientated cells. These cells transformed into horizontal cells. The doublecortin immunoreactivity persisted in these cells up to P21. Given these results, doublecortin may play an important role in the migration and differentiation of specific neuronal populations in developmental stages of the rat retina.
机译:Doublecortin是40 kDa与微管相关的磷酸化蛋白,是发展中的中枢神经系统各个区域神经元迁移和分化所必需的。我们已经使用免疫细胞化学和蛋白质印迹分析研究了双皮质素在发育中的大鼠视网膜中的表达和细胞定位。从胚胎第18天(E18)到E20,doublecortin的表达较高,而在产后期间则较低。双皮质素免疫反应性首先出现在E15原始视网膜的披覆区中的一些放射状细胞中。从E16开始,免疫反应性出现在两个不同的区域:视网膜内部和成神经细胞层的中间。在内部,神经节细胞层,成神经细胞层的远端行中的细胞的体细胞和内丛状层中的轮廓在出生后第一天(P1)表现出双重皮质素免疫反应性。此后,尽管随着视网膜的成熟强度逐渐降低,但双皮质素免疫反应性仍在内部丛状层中持续到P15。在成神经细胞层的中间,在径向取向的细胞中出现了双皮质素免疫反应性。这些细胞转化为水平细胞。在这些细胞中,双皮质素免疫反应性一直持续到P21。鉴于这些结果,双皮质激素可能在大鼠视网膜发育阶段的特定神经元群体的迁移和分化中起重要作用。

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