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首页> 外文期刊>American Journal of Physiology >Mispolarization of desmosomal proteins and altered intercellular adhesion in autosomal dominant polycystic kidney disease.
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Mispolarization of desmosomal proteins and altered intercellular adhesion in autosomal dominant polycystic kidney disease.

机译:在常染色体显性多囊肾疾病中,桥粒蛋白的错误极化和改变的细胞间粘附。

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Polycystin-1, the product of the major gene mutated in autosomal dominant polycystic kidney disease (ADPKD), has been shown to associate with multiple epithelial cell junctions. Our hypothesis is that polycystin-1 is an important protein for the initial establishment of cell-cell junctions and maturation of the cell and that polycystin-1 localization is dependent on the degree of cell polarization. Using laser-scanning confocal microscopy and two models of cell polarization, polycystin-1 and desmosomes were found to colocalize during the initial establishment of cell-cell contact when junctions were forming. However, colocalization was lost in confluent monolayers. Parallel morphological and biochemical evaluations revealed a profound mispolarization of desmosomal components to both the apical and basolateral domains in primary ADPKD cells and tissue. Studies of the intermediate filament network associated with desmosomes showed that there is a decrease in cytokeratin levels and an abnormal expression of the mesenchymal protein vimentin in the disease. Moreover, we show for the first time that the structural alterations seen in adherens and desmosomal junctions have a functional impact, leaving the ADPKD cells with weakened cell-cell adhesion. In conclusion, in this paper we show that polycystin-1 transiently colocalizes with desmosomes and that desmosomal proteins are mislocalized as a consequence of polycystin-1 mutation.
机译:Polycystin-1是常染色体显性多囊肾病(ADPKD)中突变的主要基因产物,已显示与多个上皮细胞连接有关。我们的假设是,polycystin-1是一种重要的蛋白质,可用于细胞间连接的初步建立和细胞的成熟,而polycystin-1的定位取决于细胞的极化程度。使用激光扫描共聚焦显微镜和两种细胞极化模型,发现在连接形成的最初细胞-细胞接触建立过程中,polycystin-1和桥粒是共定位的。但是,在融合的单层中失去了共定位。并行的形态学和生化评估显示,桥粒成分在原代ADPKD细胞和组织的根尖和基底外侧区域均发生了严重的极极化。对与桥粒有关的中间细丝网络的研究表明,该疾病中细胞角蛋白水平降低,间质蛋白波形蛋白表达异常。此外,我们首次证明粘附和桥粒连接处的结构改变具有功能性影响,使ADPKD细胞的细胞间粘附力减弱。总之,在本文中,我们表明多囊藻蛋白1与桥粒瞬时共定位,并且由于多囊藻蛋白1突变,桥粒蛋白错位。

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