Institute of Toxicology and Genetics, Karlsruhe Institute of Technology, Hermann von Helmholtz Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.
Development. 2013 Jul;140(13):2787-97. doi: 10.1242/dev.096487. Epub 2013 May 22.
The vertebrate central nervous system develops from an epithelium where cells are polarized along the apicobasal axis. Loss of this polarity results in abnormal organ architecture, morphology and proliferation. We found that mutations of the guanine nucleotide exchange factor ArhGEF18 affect apicobasal polarity of the retinal neuroepithelium in medaka fish. We show that ArhGEF18-mediated activation of the small GTPase RhoA is required to maintain apicobasal polarity at the onset of retinal differentiation and to control the ratio of neurogenic to proliferative cell divisions. RhoA signals through Rock2 to regulate apicobasal polarity, tight junction localization and the cortical actin cytoskeleton. The human ArhGEF18 homologue can rescue the mutant phenotype, suggesting a conserved function in vertebrate neuroepithelia. Our analysis identifies ArhGEF18 as a key regulator of tissue architecture and function, controlling apicobasal polarity and proliferation through RhoA activation. We thus identify the control of neuroepithelial apicobasal polarity as a novel role for RhoA signaling in vertebrate development.
脊椎动物中枢神经系统由上皮细胞发育而来,这些细胞沿着顶底轴具有极性。这种极性的丧失会导致器官结构、形态和增殖异常。我们发现鸟嘌呤核苷酸交换因子 ArhGEF18 的突变会影响斑马鱼视网膜神经上皮的顶底极性。我们表明,ArhGEF18 介导的小 GTPase RhoA 的激活对于维持视网膜分化开始时的顶底极性以及控制神经发生细胞与增殖细胞分裂的比例是必需的。RhoA 通过 Rock2 信号传导来调节顶底极性、紧密连接定位和皮质肌动球蛋白细胞骨架。人类 ArhGEF18 同源物可以挽救突变表型,这表明在脊椎动物神经上皮中具有保守功能。我们的分析将 ArhGEF18 鉴定为组织结构和功能的关键调节剂,通过 RhoA 的激活来控制顶底极性和增殖。因此,我们确定了 RhoA 信号在脊椎动物发育过程中对神经上皮顶底极性的控制是一个新的作用。