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Transcriptional regulators of Na,K-ATPase subunits

机译:Na,K-ATPase亚基的转录调节因子

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The Na,K-ATPase classically serves as an ion pump creating an electrochemical gradient across the plasma membrane that is essential for transepithelial transport, nutrient uptake and membrane potential. In addition, Na,K-ATPase also functions as a receptor, a signal transducer and a cell adhesion molecule. With such diverse roles, it is understandable that the Na,K-ATPase subunits, the catalytic alpha-subunit, the beta-subunit and the FXYD proteins, are controlled extensively during development and to accommodate physiological needs. The spatial and temporal expression of Na,K-ATPase is partially regulated at the transcriptional level. Numerous transcription factors, hormones, growth factors, lipids and extracellular stimuli modulate the transcription of the Na,K-ATPase subunits. Moreover, epigenetic mechanisms also contribute to the regulation of Na,K-ATPase expression. With the ever growing knowledge about diseases associated with the malfunction of Na,K-ATPase, this review aims at summarizing the best-characterized transcription regulators that modulate Na,K-ATPase subunit levels. As abnormal expression of Na,K-ATPase subunits have been observed in many carcinoma, we will also discuss transcription factors that are associated with epithelial-to-mesenchymal transition, a crucial step in the progression of many tumors to malignant disease.
机译:Na,K-ATPase通常用作离子泵,在质膜上产生电化学梯度,这对于跨上皮运输,营养吸收和膜电位至关重要。另外,Na,K-ATP酶还起受体,信号转导剂和细胞粘附分子的作用。具有如此多样的作用,可以理解,Na,K-ATP酶亚基,催化性α-亚基,β-亚基和FXYD蛋白在发育过程中受到广泛控制并适应生理需要。 Na,K-ATPase的时空表达在转录水平上受到部分调节。许多转录因子,激素,生长因子,脂质和细胞外刺激物均调节Na,K-ATPase亚基的转录。此外,表观遗传机制也有助于调节Na,K-ATPase的表达。随着对与Na,K-ATPase功能异常有关的疾病的了解不断增长,本综述旨在概述调节Na,K-ATPase亚基水平的最典型的转录调节因子。由于在许多癌症中均观察到Na,K-ATPase亚基的异常表达,因此我们还将讨论与上皮间质转化有关的转录因子,这是许多肿瘤向恶性疾病发展的关键步骤。

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