Medical Cell Biology, Medical Clinic D, University Hospital of Münster, Albert-Schweitzer Campus 1-A14, 48149, Münster, Germany.
Institute of Anatomy and Molecular Neurobiology, University of Münster, Vesaliusweg 2-4, 48149, Münster, Germany.
Cell Mol Life Sci. 2021 Apr;78(7):3657-3672. doi: 10.1007/s00018-021-03769-y. Epub 2021 Mar 2.
Apical-basal polarity is a key feature of most epithelial cells and it is regulated by highly conserved protein complexes. In mammalian podocytes, which emerge from columnar epithelial cells, this polarity is preserved and the tight junctions are converted to the slit diaphragms, establishing the filtration barrier. In Drosophila, nephrocytes show several structural and functional similarities with mammalian podocytes and proximal tubular cells. However, in contrast to podocytes, little is known about the role of apical-basal polarity regulators in these cells. In this study, we used expansion microscopy and found the apical polarity determinants of the PAR/aPKC and Crb-complexes to be predominantly targeted to the cell cortex in proximity to the nephrocyte diaphragm, whereas basolateral regulators also accumulate intracellularly. Knockdown of PAR-complex proteins results in severe endocytosis and nephrocyte diaphragm defects, which is due to impaired aPKC recruitment to the plasma membrane. Similar, downregulation of most basolateral polarity regulators disrupts Nephrin localization but had surprisingly divergent effects on endocytosis. Our findings suggest that morphology and slit diaphragm assembly/maintenance of nephrocytes is regulated by classical apical-basal polarity regulators, which have distinct functions in endocytosis.
顶端-基底极性是大多数上皮细胞的一个关键特征,它受高度保守的蛋白复合物的调控。在哺乳动物足细胞中,这种极性得以保留,紧密连接被转化为裂隙隔膜,从而建立了过滤屏障。在果蝇中,肾细胞与哺乳动物足细胞和近端肾小管细胞具有一些结构和功能上的相似性。然而,与足细胞不同的是,关于顶端-基底极性调节剂在这些细胞中的作用知之甚少。在这项研究中,我们使用扩展显微镜发现,PAR/aPKC 和 Crb 复合物的顶端极性决定因素主要靶向到靠近肾细胞隔膜的细胞皮层,而基底外侧调节剂也在细胞内积累。PAR 复合物蛋白的敲低导致严重的内吞作用和肾细胞隔膜缺陷,这是由于 aPKC 向质膜的募集受损所致。类似地,大多数基底外侧极性调节剂的下调破坏了 Nephrin 的定位,但对内吞作用有惊人的不同影响。我们的研究结果表明,肾细胞的形态和裂隙隔膜的组装/维持受经典的顶端-基底极性调节剂的调控,这些调节剂在细胞内吞中具有不同的功能。