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与 GJC2/Connexin 47 突变相关疾病的发病机制。

Mechanisms of Diseases Associated with Mutation in GJC2/Connexin 47.

机构信息

Department of Neurology and Rehabilitation, University of Illinois at Chicago College of Medicine, Chicago, IL 60612, USA.

出版信息

Biomolecules. 2023 Apr 21;13(4):712. doi: 10.3390/biom13040712.

Abstract

Connexins are members of a family of integral membrane proteins that provide a pathway for both electrical and metabolic coupling between cells. Astroglia express connexin 30 (Cx30)- and Cx43-, while oligodendroglia express Cx29/Cx31.3-, Cx32-, and Cx47-. Connexins organize into hexameric hemichannels (homomeric if all subunits are identical or heteromeric if one or more differs). Hemichannels from one cell then form cell-cell channels with a hemichannel from an apposed cell. (These are termed homotypic if the hemichannels are identical and heterotypic if the hemichannels differ). Oligodendrocytes couple to each other through Cx32/Cx32 or Cx47/Cx47 homotypic channels and they couple to astrocytes via Cx32/Cx30 or Cx47/Cx43 heterotypic channels. Astrocytes couple via Cx30/Cx30 and Cx43/Cx43 homotypic channels. Though Cx32 and Cx47 may be expressed in the same cells, all available data suggest that Cx32 and Cx47 cannot interact heteromerically. Animal models wherein one or in some cases two different CNS glial connexins have been deleted have helped to clarify the role of these molecules in CNS function. Mutations in a number of different CNS glial connexin genes cause human disease. Mutations in lead to three distinct phenotypes, Pelizaeus Merzbacher like disease, hereditary spastic paraparesis (SPG44) and subclinical leukodystrophy.

摘要

连接蛋白是一类整合膜蛋白家族的成员,它们为细胞间的电偶联和代谢偶联提供了途径。星形胶质细胞表达连接蛋白 30(Cx30)和 Cx43,而少突胶质细胞表达 Cx29/Cx31.3、Cx32 和 Cx47。连接蛋白组成六聚体半通道(如果所有亚基相同则为同源,如果一个或多个亚基不同则为异源)。一个细胞的半通道然后与相邻细胞的半通道形成细胞-细胞通道。(如果半通道相同,则这些通道称为同源型,如果半通道不同,则称为异源型)。少突胶质细胞通过 Cx32/Cx32 或 Cx47/Cx47 同源通道相互偶联,通过 Cx32/Cx30 或 Cx47/Cx43 异源通道与星形胶质细胞偶联。星形胶质细胞通过 Cx30/Cx30 和 Cx43/Cx43 同源通道偶联。尽管 Cx32 和 Cx47 可能在同一细胞中表达,但所有现有数据表明 Cx32 和 Cx47 不能异源相互作用。在一种或在某些情况下两种不同的中枢神经系统神经胶质连接蛋白被删除的动物模型有助于阐明这些分子在中枢神经系统功能中的作用。许多不同的中枢神经系统神经胶质连接蛋白基因突变导致人类疾病。突变导致三种不同的表型,Pelizaeus-Merzbacher 样疾病、遗传性痉挛性截瘫(SPG44)和亚临床白质营养不良。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8801/10135871/94e2b2093a14/biomolecules-13-00712-g001.jpg

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