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Noninvasive monitoring of transporter-substrate interaction at cell membrane

机译:非侵入性监测细胞膜上转运蛋白与底物的相互作用

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We report noninvasive monitoring of the transporter-substrate interaction at the cell membrane using an oocyte-based field effect transistor (FET), which is based on detection of extracellular potential change induced as a result of the interaction between transporting peptide and substrate at the cell membrane. The interface potential change at the cell membrane/gate insulator interface can be monitored during the uptake of substrate mediated by transporter without any labeling materials and fracturing oocyte. Moreover, we can discriminate the transporting kinetics of the substrate mediated by the wild-type and the mutant-type transporters by use of the oocyte-based FETs. Our findings on the time course of the interface potential would provide important information to understand the molecular mechanism of the uptake kinetics for the OATP-C transporter.
机译:我们报告了基于卵母细胞的场效应晶体管(FET)在细胞膜上对转运蛋白-底物相互作用的无创监测,其基于检测由于细胞中转运肽和底物之间的相互作用而引起的细胞外电位变化膜。可以在转运蛋白介导的底物摄取过程中监测细胞膜/栅绝缘子界面的界面电位变化,而无需任何标记材料和卵母细胞破裂。此外,我们可以通过使用基于卵母细胞的FET来区分由野生型和突变型转运蛋白介导的底物的转运动力学。我们在界面电位的时程上的发现将为了解OATP-C转运蛋白吸收动力学的分子机制提供重要信息。

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