Zou Jian, Lathrop Kira L, Sun Ming, Wei Xiangyun
Department of Ophthalmology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15213, USA.
J Neurosci. 2008 Dec 10;28(50):13684-95. doi: 10.1523/JNEUROSCI.4333-08.2008.
Within the vertebrate eye, the retinal pigment epithelium (RPE) juxtaposes with the retina, but how the RPE plays a role in retinal morphogenesis remains elusive. It has been shown that the loss of function of the polarity proteins, such as Nagie oko (Nok), disrupts RPE integrity and retinal lamination. However, it is unclear whether or not such defects are caused in a tissue-autonomous manner. Here, by taking advantage of the nok mutation, we have generated a transgenic model to restore the Nok function in the RPE, but not in the retina. With this model, we show that Nok is required for RPE integrity in a tissue-autonomous manner. However, proper retinal epithelial polarity does not require retinal expression of Nok before embryonic photoreceptor genesis; rather, it requires a Nok-mediated intact RPE. Interestingly, sporadic wild-type RPE donor cells are not sufficient to maintain proper retinal polarity. We further show that RPE-mediated retinal epithelial polarity underlies proper patterning of retinal ganglion cells and the cells of the inner nuclear layer. Nevertheless, during embryonic photoreceptor genesis, an intact RPE is not sufficient to maintain retinal epithelial polarity and retinal cellular pattern formation. Our results show that the subcellular architecture and cellular pattern formation of a tissue may be regulated by neighboring tissues through tissue-tissue interactions.
在脊椎动物眼中,视网膜色素上皮(RPE)与视网膜相邻,但RPE在视网膜形态发生中如何发挥作用仍不清楚。已有研究表明,极性蛋白如Nagie oko(Nok)功能丧失会破坏RPE完整性和视网膜分层。然而,尚不清楚这些缺陷是否以组织自主方式产生。在这里,利用nok突变,我们构建了一个转基因模型,以恢复RPE而非视网膜中的Nok功能。利用这个模型,我们表明Nok以组织自主方式维持RPE完整性是必需的。然而,在胚胎光感受器发生之前,正常的视网膜上皮极性并不需要视网膜表达Nok;相反,它需要Nok介导的完整RPE。有趣的是,散在的野生型RPE供体细胞不足以维持正常的视网膜极性。我们进一步表明,RPE介导的视网膜上皮极性是视网膜神经节细胞和内核层细胞正常模式形成的基础。然而,在胚胎光感受器发生过程中,完整的RPE不足以维持视网膜上皮极性和视网膜细胞模式形成。我们的结果表明,组织的亚细胞结构和细胞模式形成可能通过组织间相互作用受到相邻组织的调节。