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首页> 外文期刊>American Journal of Physiology >Chronic and selective inhibition of basolateral membrane Na-K-ATPase uniquely regulates brush border membrane Na absorption in intestinal epithelial cells
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Chronic and selective inhibition of basolateral membrane Na-K-ATPase uniquely regulates brush border membrane Na absorption in intestinal epithelial cells

机译:基石运动膜Na-K-ATP酶的慢性和选择性抑制在肠上皮细胞中唯一调节刷界膜NA吸收

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摘要

Na-K-ATPase, an integral membrane protein in mammalian cells, is responsible for maintaining the favorable intracellular Na gradient necessary to promote Na-coupled solute cotransport processes [e.g., Na-glucose cotransport (SGLT1)]. Inhibition of brush border membrane (BBM) SGLT1 is, at least in part, due to the diminished Na-K-ATPase in villus cells from chronically inflamed rabbit intestine. The aim of the present study was to determine the effect of Na-K-ATPase inhibition on the two major BBM Na absorptive pathways, specifically Na-glucose cotransport and Na/H exchange (NHE), in intestinal epithelial (IEC-18) cells. Na-K-ATPase was inhibited using 1 mM ouabain or siRNA for Na-K-ATPase-ai in IEC-18 cells. SGLT1 activity was determined as 3-Omethyl-D-[3H]glucose uptake. Na-K-ATPase activity was measured as the amount of inorganic phosphate released. Treatment with ouabain resulted in SGLT1 inhibition at 1 h but stimulation at 24 h. To further characterize this unexpected stimulation of SGLT1, siRNA silencing was utilized to inhibit Na-K-ATPase-ct]. SGLT1 activity was significantly upregulated by Na-K-ATPase silencing, while NHE3 activity remained unaltered. Kinetics showed that the mechanism of stimulation of SGLT1 activity was secondary to an increase in affinity of the cotransporter for glucose without a change in the number of cotransporters. Molecular studies demonstrated that the mechanism of stimulation was not secondary to altered BBM SGLT1 protein levels. Chronic and direct silencing of basolateral Na-K-ATPase uniquely regulates BBM Na absorptive pathways in intestinal epithelial cells. Specifically, while BBM NHE3 is unaffected, SGLT1 is stimulated secondary to enhanced affinity of the cotransporter.
机译:Na-K-ATPase是哺乳动物细胞中的整体膜蛋白,负责维持促进Na偶联的溶质Cotransport方法所需的有利细胞内Na梯度[例如,Na-葡萄糖Cotransport(SGlt1)]。由于从长期发炎的兔肠中绒毛细胞中的绒毛细胞中的降低的Na-K-Atpase,刷纹膜(BBM)SGLT1的抑制性是抑制。本研究的目的是确定肠上皮(IEC-18)细胞中的两个主要BBM NA吸收途径,特别是Na-Gucose Cotransport和Na / H兑换(NHE)的影响。 。在IEC-18细胞中使用1mm Ouabain或siRNA抑制Na-K-ATP酶或用于Na-K-ATP酶-AI的siRNA。 SGLT1活性被确定为3- om甲基-D-[3H]葡萄糖摄取。测量Na-K-ATP酶活性作为释放的无机磷酸盐的量。用Ouabain治疗导致SGLT1抑制在1小时,但24小时刺激。为了进一步表征SGLT1的这种意外刺激,SiRNA沉默用于抑制Na-K-AtPase-CT]。通过NA-K-ATP酶沉默显着上调SGLT1活性,而NHE3活性仍未变化。动力学表明,SGLT1活性的刺激机制是次要COTRANSPORTER对葡萄糖的血糖的含量增加,而不会改变COT转运者的数量。分子研究表明,刺激机制不缩放以改变BBM SGLT1蛋白水平。基底外侧Na-K-ATPase的慢性和直接沉默在肠上皮细胞中唯一调节BBM Na吸收途径。具体而言,虽然BBM NHE3未受影响,但SGLT1被刺激次级以增强COTRANSPORTER的亲和力。

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