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Repositioning Chloride Transmembrane Transporters: Transport of Organic Ion Pairs

机译:重新定位氯化物跨膜转运蛋白:有机离子对的运输

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摘要

Given the biological importance of organic cations, the facilitated transport of organic ion pairs could find many applications. Calix[6]arene tris(thio)ureas, which possess a cavity that can accommodate primary ammonium ions, can not only act as carriers for Cl-/NO3- antiport but can also perform the cotransport of PrNH3Cl. Transport was monitored by fluorescence spectroscopy and the presence of the different species inside the vesicles was characterized by H-1 and Cl-35 NMR experiments involving shift reagents. The cotransport of PrNH3Cl was also observed by receptors deprived of a cavity, but the presence of the cavity conveys an advantage, as the cotransport by calix[6]arenes was observed to be more efficient than the Cl-/NO3- antiport, which is not the case with receptors without a cavity. The role played by the cavity was further highlighted by the disappearance of this advantage when using a bulky ammonium ion, which cannot be complexed within the cavity.
机译:鉴于有机阳离子的生物重要性,有机离子对的促进运输可以找到许多应用。 CALIX [6]芳烃TRIS(THIO)脲,其具有可以容纳初级铵离子的腔,不仅可以作为CL- / NO3- antiport的载体,而且还可以进行PRNH3CL的COTRANSPORT。 通过荧光光谱监测运输,并在囊泡内部存在不同物质的特征在于涉及移位试剂的H-1和Cl-35 NMR实验。 也通过剥夺腔的受体观察到PRNH3Cl的COTRANSPORT,但是腔体的存在传达了优点,因为CALIX [6]植物的COTRANSPORT被观察到比CL- / NO3-ANTIPORT更有效 不是没有腔的受体的情况。 在使用庞大的铵离子时,通过这种优势的消失,进一步突出了腔的作用,该铵离子不能在腔内络合。

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