Involvement of aquaporin‐4 in laminin‐enhanced process formation of mouse astrocytes in 2D culture: Roles of dystroglycan and α‐syntrophin in aquaporin‐4 expression

肌营养不良聚糖 层粘连蛋白 细胞生物学 星形胶质细胞 水通道蛋白4 生物 基因敲除 肌营养不良蛋白 细胞外基质 分子生物学 细胞培养 解剖 生物化学 神经科学 中枢神经系统 遗传学 骨骼肌
作者
Junya Sato,Sayo Horibe,Shoji Kawauchi,Naoto Sasaki,Ken‐ichi Hirata,Yoshiyuki Rikitake
出处
期刊:Journal of Neurochemistry [Wiley]
卷期号:147 (4): 495-513 被引量:27
标识
DOI:10.1111/jnc.14548
摘要

Abstract In the central nervous system, astrocytes extend endfoot processes to ensheath synapses and microvessels. However, the mechanisms underlying this astrocytic process extension remain unclear. A limitation of the use of 2D cultured astrocytes for such studies is that they display a flat, epithelioid morphology, with no or very few processes, which is markedly different from the stellate morphology observed in vivo . In this study, we obtained 2D cultured astrocytes with a rich complexity of processes using differentiation of neurospheres in vitro . Using these process‐bearing astrocytes, we showed that laminin, an extracellular matrix molecule abundant in perivascular sites, efficiently induced process formation and branching. Specifically, the numbers of the first‐ and second‐order branch processes and the maximal process length of astrocytes were increased when cultured on laminin, compared with when they were cultured on poly‐L‐ornithine or type IV collagen. Knockdown of dystroglycan or α‐syntrophin, constituent proteins of the dystrophin–glycoprotein complex that provides a link between laminin and the cytoskeleton, using small interference RNAs inhibited astrocyte process formation and branching, and down‐regulated expression of the water channel aquaporin‐4 (AQP4). Direct knockdown and a specific inhibitor of AQP4 also inhibited, whereas over‐expression of AQP4 enhanced astrocyte process formation and branching. Knockdown of AQP4 decreased phosphorylation of focal adhesion kinase (FAK) that is critically implicated in actin remodeling. Collectively, these results indicate that the laminin–dystroglycan–α‐syntrophin–AQP4 axis is important for process formation and branching of 2D cultured astrocytes. Open Practices This article has received a badge for * Open Materials * because it provided all relevant information to reproduce the study in the manuscript. The complete Open Science Disclosure form for this article can be found at the end of the article. More information about the Open Practices badges can be found at https://cos.io/our-services/open-science-badges/ . image Read the Editorial Highlight for this article on page 436 .
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