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Using small molecules to facilitate exchange of bicarbonate and chloride anions across liposomal membranes

机译:使用小分子促进碳酸氢盐膜上碳酸氢根和氯离子的交换

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摘要

Bicarbonate is involved in a wide range of biological processes, which include respiration, regulation of intracellular pH and fertilization. In this study we use a combination of NMR spectroscopy and ion-selective electrode techniques to show that the natural product prodigiosin, a tripyrrolic molecule produced by microorganisms such as Streptomyces and Serratia, facilitates chloride/bicarbonate exchange (antiport) across liposomal membranes. Higher concentrations of simple synthetic molecules based on a 4,6-dihydroxyisophthalamide core are also shown to facilitate this antiport process. Although it is well known that proteins regulate Cl-/HCO3- exchange in cells, these results suggest that small molecules may also be able to regulate the concentration of these anions in biological systems.
机译:碳酸氢盐涉及广泛的生物学过程,包括呼吸,调节细胞内pH和受精。在这项研究中,我们结合使用NMR光谱学和离子选择性电极技术来显示天然产物prodigiosin(一种由链霉菌和粘质沙雷氏菌等微生物产生的三吡咯分子)促进脂质体膜之间的氯离子/碳酸氢根交换(反)。还显示出较高浓度的基于4,6-二羟基间苯二甲酰胺核心的简单合成分子可促进这种反转运过程。尽管众所周知蛋白质可调节细胞中Cl- / HCO3-的交换,但这些结果表明,小分子也可能能够调节生物系统中这些阴离子的浓度。

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