Nam Sang-Chul
Department of Biology, Texas A&M International University, Laredo, TX, 78041.
Genesis. 2016 Nov;54(11):553-561. doi: 10.1002/dvg.22966. Epub 2016 Sep 13.
Cell polarity genes have important functions in photoreceptor morphogenesis. Based on recent discovery of stabilized microtubule cytoskeleton in developing photoreceptors and its role in photoreceptor cell polarity, microtubule associated proteins might have important roles in controlling cell polarity proteins' localizations in developing photoreceptors. Here, Tau, a microtubule associated protein, was analyzed to find its potential role in photoreceptor cell polarity. Tau colocalizes with acetylated/stabilized microtubules in developing pupal photoreceptors. Although it is known that tau mutant photoreceptor has no defects in early eye differentiation and development, it shows dramatic disruptions of cell polarity proteins, adherens junctions, and the stable microtubules in developing pupal photoreceptors. This role of Tau in cell polarity proteins' localization in photoreceptor cells during the photoreceptor morphogenesis was further supported by Tau's overexpression studies. Tau overexpression caused dramatic expansions of apical membrane domains where the polarity proteins localize in the developing pupal photoreceptors. It is also found that Tau's role in photoreceptor cell polarity depends on Par-1 kinase. Furthermore, a strong genetic interaction between tau and crumbs was found. It is found that Tau has a crucial role in cell polarity protein localization during pupal photoreceptor morphogenesis stage, but not in early eye development including eye cell differentiation.
细胞极性基因在光感受器形态发生中具有重要功能。基于最近在发育中的光感受器中发现的稳定微管细胞骨架及其在光感受器细胞极性中的作用,微管相关蛋白可能在控制发育中的光感受器中细胞极性蛋白的定位方面发挥重要作用。在此,对微管相关蛋白Tau进行了分析,以探究其在光感受器细胞极性中的潜在作用。在发育中的蛹期光感受器中,Tau与乙酰化/稳定化的微管共定位。虽然已知tau突变体光感受器在早期眼睛分化和发育中没有缺陷,但它在发育中的蛹期光感受器中显示出细胞极性蛋白、黏着连接和稳定微管的显著破坏。Tau在光感受器形态发生过程中对光感受器细胞极性蛋白定位的这一作用,通过Tau的过表达研究得到了进一步支持。Tau过表达导致极性蛋白在发育中的蛹期光感受器中定位的顶端膜结构域显著扩展。还发现Tau在光感受器细胞极性中的作用依赖于Par-1激酶。此外,还发现tau与crumbs之间存在强烈的遗传相互作用。研究发现,Tau在蛹期光感受器形态发生阶段对细胞极性蛋白定位起着关键作用,但在包括眼细胞分化在内的早期眼睛发育中并非如此。