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巨脑白质脑病伴皮质下囊肿蛋白 1 与 TRPV4 阳离子通道功能合作,激活星形胶质细胞对渗透胁迫的反应:病理突变的失调。

Megalencephalic leukoencephalopathy with subcortical cysts protein 1 functionally cooperates with the TRPV4 cation channel to activate the response of astrocytes to osmotic stress: dysregulation by pathological mutations.

机构信息

Department of Cell Biology and Neuroscience, Istituto Superiore di Sanità,Viale Regina Elena 299, Rome 00161, Italy.

出版信息

Hum Mol Genet. 2012 May 15;21(10):2166-80. doi: 10.1093/hmg/dds032. Epub 2012 Feb 9.

Abstract

Megalencephalic leukoencephalopathy with subcortical cysts (MLC), a rare leukodystrophy characterized by macrocephaly, subcortical fluid cysts and myelin vacuolation, has been linked to mutations in the MLC1 gene. This gene encodes a membrane protein that is highly expressed in astrocytes. Based on MLC pathological features, it was proposed that astrocyte-mediated defects in ion and fluid homeostasis could account for the alterations observed in MLC-affected brains. However, the role of MLC1 and the effects of pathological mutations on astrocyte osmoregulatory functions have still to be demonstrated. Using human astrocytoma cells stably overexpressing wild-type MLC1 or three known MLC-associated pathological mutations, we investigated MLC1 involvement in astrocyte reaction to osmotic changes using biochemical, dynamic video imaging and immunofluorescence techniques. We have found that MLC1 overexpressed in astrocytoma cells is mainly localized in the plasma membrane, is part of the Na,K-ATPase-associated molecular complex that includes the potassium channel Kir4.1, syntrophin and aquaporin-4 and functionally interacts with the calcium permeable channel TRPV4 (transient receptor potential vanilloid-4 cation channel) which mediates swelling-induced cytosolic calcium increase and volume recovery in response to hyposmosis. Pathological MLC mutations cause changes in MLC1 expression and intracellular localization as well as in the astrocyte response to osmotic changes by altering MLC1 molecular interactions with the Na,K-ATPase molecular complex and abolishing the increase in calcium influx induced by hyposmosis and treatment with the TRPV4 agonist 4αPDD. These data demonstrate, for the first time, that MLC1 plays a role in astrocyte osmo-homeostasis and that defects in intracellular calcium dynamics may contribute to MLC pathogenesis.

摘要

巨脑性脑白质病伴皮质下囊肿(MLC)是一种罕见的脑白质营养不良,其特征为大头畸形、皮质下液体囊肿和髓鞘空泡化,与 MLC1 基因突变有关。该基因编码一种高度表达于星形胶质细胞的膜蛋白。基于 MLC 的病理特征,提出星形胶质细胞介导的离子和液体稳态缺陷可能解释 MLC 病变大脑中观察到的改变。然而,MLC1 的作用以及病理突变对星形胶质细胞渗透压调节功能的影响仍有待证明。我们使用稳定过表达野生型 MLC1 或三种已知的 MLC 相关病理突变的人星形细胞瘤细胞,通过生化、动态视频成像和免疫荧光技术研究了 MLC1 参与星形胶质细胞对渗透压变化的反应。我们发现,星形细胞瘤细胞中过表达的 MLC1 主要定位于质膜,是与钾通道 Kir4.1、连接蛋白和水通道蛋白-4 相关的 Na,K-ATPase 相关分子复合物的一部分,并且与钙渗透性通道 TRPV4(瞬时受体电位香草素-4 阳离子通道)功能相互作用,该通道介导细胞肿胀诱导的胞质钙增加和体积恢复对低渗的反应。病理 MLC 突变导致 MLC1 表达和细胞内定位的改变,以及星形胶质细胞对渗透压变化的反应改变,通过改变 MLC1 与 Na,K-ATPase 分子复合物的分子相互作用并消除低渗和 TRPV4 激动剂 4αPDD 处理诱导的钙内流增加。这些数据首次证明 MLC1 在星形胶质细胞渗透压稳态中发挥作用,并且细胞内钙动力学缺陷可能导致 MLC 发病机制。

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