首页> 外文期刊>International Journal of Molecular Sciences >Na+, K+-ATPase Subunit Composition in a Human Chondrocyte Cell Line; Evidence for the Presence of α1, α3, β1, β2 and β3 Isoforms
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Na+, K+-ATPase Subunit Composition in a Human Chondrocyte Cell Line; Evidence for the Presence of α1, α3, β1, β2 and β3 Isoforms

机译:人软骨细胞系中Na + ,K + -ATPase亚基组成;存在α1,α3,β1,β2和β3亚型的证据

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Membrane transport systems participate in fundamental activities such as cell cycle control, proliferation, survival, volume regulation, pH maintenance and regulation of extracellular matrix synthesis. Multiple isoforms of Na+, K+-ATPase are expressed in primary chondrocytes. Some of these isoforms have previously been reported to be expressed exclusively in electrically excitable cells (i.e., cardiomyocytes and neurons). Studying the distribution of Na+, K+-ATPase isoforms in chondrocytes makes it possible to document the diversity of isozyme pairing and to clarify issues concerning Na+, K+-ATPase isoform abundance and the physiological relevance of their expression. In this study, we investigated the expression of Na+, K+-ATPase in a human chondrocyte cell line (C-20/A4) using a combination of immunological and biochemical techniques. A panel of well-characterized antibodies revealed abundant expression of the α1, β1 and β2 isoforms. Western blot analysis of plasma membranes confirmed the above findings. Na+, K+-ATPase consists of multiple isozyme variants that endow chondrocytes with additional homeostatic control capabilities. In terms of Na+, K+-ATPase expression, the C-20/A4 cell line is phenotypically similar to primary and in situ chondrocytes. However, unlike freshly isolated chondrocytes, C-20/A4 cells are an easily accessible and convenient in vitro model for the study of Na+, K+-ATPase expression and regulation in chondrocytes.
机译:膜转运系统参与基本活动,例如细胞周期控制,增殖,存活,体积调节,pH维持和细胞外基质合成调节。 Na + ,K + -ATPase的多种同工型在原代软骨细胞中表达。这些同工型中的某些以前已被报道仅在电可兴奋细胞(即,心肌细胞和神经元)中表达。研究Na + ,K + -ATPase同工型在软骨细胞中的分布,有可能记录同工酶配对的多样性并阐明有关Na + ,K + -ATPase同工型丰度及其表达的生理相关性。在这项研究中,我们结合免疫学和生化学方法研究了Na + ,K + -ATPase在人软骨细胞系(C-20 / A4)中的表达技术。一组特征明确的抗体显示了α1,β1和β2亚型的大量表达。质膜的蛋白质印迹分析证实了上述发现。 Na + ,K + -ATPase由多种同工酶变体组成,这些变体赋予软骨细胞额外的稳态控制能力。就Na + ,K + -ATPase的表达而言,C-20 / A4细胞系在表型上与原代和原位软骨细胞相似。然而,与新鲜分离的软骨细胞不同,C-20 / A4细胞是用于研究Na + ,K + -ATPase表达和调控的易于访问且方便的体外模型。在软骨细胞中。

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