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Pelizaeus-Merzbacher-like 病相关连接蛋白 47 突变在连接蛋白 47/47 同源型和连接蛋白 47/43 异型缝隙连接上的分布和功能特性。

The distribution and functional properties of Pelizaeus-Merzbacher-like disease-linked Cx47 mutations on Cx47/Cx47 homotypic and Cx47/Cx43 heterotypic gap junctions.

机构信息

Department of Physiology and Pharmacology, University of Western Ontario, London, Ontario, Canada, N6A 5C1.

出版信息

Biochem J. 2013 Jun 1;452(2):249-58. doi: 10.1042/BJ20121821.

Abstract

GJs (gap junctions) allow direct intercellular communication, and consist of Cxs (connexins). In the mammalian central nervous system, oligodendrocytes express Cx47, Cx32 and Cx29, whereas astrocytes express Cx43, Cx30 and Cx26. Homotypic Cx47/Cx47 GJs couple oligodendrocytes, and heterotypic Cx47/Cx43 channels are the primary GJs at oligodendrocyte/astrocyte junctions. Interestingly, autosomal recessive mutations in the gene GJC2 encoding Cx47 have been linked to a central hypomyelinating disease termed PMLD (Pelizaeus-Merzbacher-like disease). The aim of the present study was to determine the cellular distribution and functional properties of PMLD-associated Cx47 mutants (I46M, G149S, G236R, G236S, M286T and T398I). Expressing GFP (green fluorescent protein)-tagged mutant versions of Cx47 in gap-junction-deficient model cells revealed that these mutants were detected at the cell-cell interface similar to that observed for wild-type Cx47. Furthermore, four of the six mutants showed no electrical coupling in both Cx47/Cx47 and Cx47/Cx43 GJ channels. These results suggest that most of the PMLD-linked Cx47 mutants disrupt Cx47/Cx47 and Cx47/Cx43 GJ function in the glial network, which may play a role in leading to PMLD symptoms.

摘要

GJs(缝隙连接)允许直接细胞间通讯,由 Cxs(连接蛋白)组成。在哺乳动物中枢神经系统中,少突胶质细胞表达 Cx47、Cx32 和 Cx29,而星形胶质细胞表达 Cx43、Cx30 和 Cx26。同源 Cx47/Cx47 GJ 偶联少突胶质细胞,而异源 Cx47/Cx43 通道是少突胶质细胞/星形胶质细胞连接处的主要 GJ。有趣的是,编码 Cx47 的基因 GJC2 的常染色体隐性突变与一种称为 PMLD(Pelizaeus-Merzbacher 样疾病)的中枢脱髓鞘疾病有关。本研究旨在确定与 PMLD 相关的 Cx47 突变体(I46M、G149S、G236R、G236S、M286T 和 T398I)的细胞分布和功能特性。在缝隙连接缺陷型模型细胞中表达 GFP(绿色荧光蛋白)标记的突变型 Cx47 版本表明,这些突变体与野生型 Cx47 一样在细胞-细胞界面上被检测到。此外,六个突变体中的四个在 Cx47/Cx47 和 Cx47/Cx43 GJ 通道中均未显示电偶联。这些结果表明,大多数 PMLD 相关的 Cx47 突变体破坏了少突胶质细胞网络中的 Cx47/Cx47 和 Cx47/Cx43 GJ 功能,这可能在导致 PMLD 症状中起作用。

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