Institute of Developmental Biology and Molecular Medicine, Fudan University, Shanghai 200433, China.
J Biol Chem. 2012 Sep 21;287(39):32861-73. doi: 10.1074/jbc.M112.384305. Epub 2012 Aug 1.
Intracellular vesicle transport pathways are critical for neuronal survival and central nervous system development. The Vps-C complex regulates multiple vesicle transport pathways to the lysosome in lower organisms. However, little is known regarding its physiological function in mammals. We deleted Vps18, a central member of Vps-C core complex, in neural cells by generating Vps18(F/F); Nestin-Cre mice (Vps18 conditional knock-out mice). These mice displayed severe neurodegeneration and neuronal migration defects. Mechanistic studies revealed that Vps18 deficiency caused neurodegeneration by blocking multiple vesicle transport pathways to the lysosome, including autophagy, endocytosis, and biosynthetic pathways. Our study also showed that ablation of Vps18 resulted in up-regulation of β1 integrin in mouse brain probably due to lysosome dysfunction but had no effects on the reelin pathway, expression of N-cadherin, or activation of JNK, which are implicated in the regulation of neuronal migration. Finally, we demonstrated that knocking down β1 integrin partially rescued the migration defects, suggesting that Vps18 deficiency-mediated up-regulation of β1 integrin may contribute to the defect of neuronal migration in the Vps18-deficient brain. Our results demonstrate important roles of Vps18 in neuron survival and migration, which are disrupted in multiple neural disorders.
细胞内囊泡运输途径对于神经元存活和中枢神经系统发育至关重要。Vps-C 复合物在较低等生物中调节到溶酶体的多种囊泡运输途径。然而,关于其在哺乳动物中的生理功能知之甚少。我们通过生成 Vps18(F/F);Nestin-Cre 小鼠(Vps18 条件性敲除小鼠)在神经细胞中删除了 Vps18,这是 Vps-C 核心复合物的中心成员。这些小鼠表现出严重的神经退行性变和神经元迁移缺陷。机制研究表明,Vps18 缺乏通过阻断到溶酶体的多种囊泡运输途径(包括自噬、内吞作用和生物合成途径)导致神经退行性变。我们的研究还表明,Vps18 的缺失导致小鼠大脑中β1 整合素的上调,可能是由于溶酶体功能障碍,但对 reelin 途径、N-钙粘蛋白的表达或 JNK 的激活没有影响,这些都与神经元迁移的调节有关。最后,我们证明了敲低β1 整合素可以部分挽救迁移缺陷,这表明 Vps18 缺乏介导的β1 整合素上调可能导致 Vps18 缺乏大脑中神经元迁移的缺陷。我们的研究结果表明,Vps18 在神经元存活和迁移中发挥重要作用,这在多种神经疾病中受到干扰。