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Oculodentodigital dysplasia connexin43 mutations result in non-functional connexin hemichannels and gap junctions in C6 glioma cells

机译:Oculodentodigital发育不良连接蛋白43突变导致C6胶质瘤细胞中无功能的连接蛋白半通道和间隙连接

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Oculodentodigital dysplasia (ODDD) is a rare developmental disorder characterized by craniofacial and limb abnormalities. Over 35 separate mutations in human connexin43 (Cx43) causing ODDD have been identified. Several mutations are also associated with central nervous system involvement, including white-matter changes detected by magnetic resonance imaging. As Cx43 is abundantly expressed in astrocytes, we hypothesized that the mutant Cx43 proteins that produce neurological dysfunction have abnormal functional characteristics in astrocytes. To understand how ODDD-associated mutations affect Cx43 signaling in cells of glial origin, we conducted studies in rat C6 glioma cells, a communication-deficient glial cell line that expresses low levels of Cx43. We generated stable cell lines expressing enhanced yellow fluorescent protein (eYFP)-tagged human Cx43 constructs encoding wild-type and six eYFP-tagged mutant Cx43 mutants: Y17S, G21R, A40V, F52dup, L90V and I130T. Of these, Y17S, L90V and I130T are associated with neurological abnormalities. We found that all mutantscould be detected on the cell surface. Y17S, G21R, A40V, L90V and 1130T formed triton-resistant plaques representing gap junctions, although the relative ability to form plaques was decreased in these mutants compared with the wild type. F52dup formed dramatically reduced numbers of plaques. Propidium iodide uptake experiments demonstrated that all mutants were associated with reduced connexin hemichannel function compared with wild type. Scrape-loading experiments performed on the same stable cell lines showed reduced gap junctional dye transfer in all mutants compared with the wild type. These studies demonstrated that ODDD-associated Cx43 mutations result in non-functional connexin hemichannels and gap junction functions in a glial cell line regardless of whether the particular mutant is associated with neurological dysfunction.
机译:眼牙指发育不良(ODDD)是一种罕见的发育性疾病,其特征是颅面和肢体异常。已鉴定出人类连接蛋白43(Cx43)中超过35种引起ODDD的独立突变。一些突变也与中枢神经系统受累相关,包括通过磁共振成像检测到的白质变化。由于Cx43在星形胶质细胞中大量表达,我们假设产生神经功能障碍的突变Cx43蛋白在星形胶质细胞中具有异常的功能特征。为了了解与ODDD相关的突变如何影响神经胶质来源细胞中的Cx43信号传导,我们在大鼠C6胶质瘤细胞中进行了研究,这是一种通讯缺陷型神经胶质细胞系,表达低水平的Cx43。我们生成了稳定的细胞系,该细胞系表达增强的黄色荧光蛋白(eYFP)标记的人Cx43构建体,该构建体编码野生型和六个eYFP标记的突变体Cx43突变体:Y17S,G21R,A40V,F52dup,L90V和I130T。其中,Y17S,L90V和I130T与神经系统异常有关。我们发现应该在细胞表面检测到所有突变体。 Y17S,G21R,A40V,L90V和1130T形成了代表间隙连接的抗Triton的噬菌斑,尽管与野生型相比,这些突变体形成噬菌斑的相对能力有所降低。 F52dup形成的斑块数量大大减少。碘化丙锭摄取实验表明,与野生型相比,所有突变体均与连接蛋白半通道功能降低有关。在相同的稳定细胞系上进行的刮擦加载实验显示,与野生型相比,所有突变体的间隙连接染料转移减少。这些研究表明,ODDD相关的Cx43突变导致神经胶质细胞系中无功能的连接蛋白半通道和间隙连接功能,无论特定的突变体是否与神经功能障碍有关。

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