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短链脂缀合 pH 传感器用于在重组体系和活细胞中成像转运蛋白活性。

Short-chain lipid-conjugated pH sensors for imaging of transporter activities in reconstituted systems and living cells.

机构信息

Faculty of Chemistry and Biochemistry, Department of Molecular Biochemistry, Ruhr University Bochum, Universitätstrasse 150, D-44780 Bochum, Germany.

出版信息

Analyst. 2019 Apr 23;144(9):3030-3037. doi: 10.1039/c8an02161a.

Abstract

The design of ion sensors has gained importance for the study of ion dynamics in cells, with fluorescent proton nanosensors attracting particular interest because of their applicability in monitoring pH gradients in biological microcompartments and reconstituted membrane systems. In this work, we describe the improved synthesis, photophysical properties and applications of pH sensors based on amine-reactive pHrodo esters and short-chain lipid derivatives of phosphoethanolamine. The major features of these novel probes include strong fluorescence under acidic conditions, efficient partitioning into membranes, and extractability by back exchange to albumin. These features allow for the selective labeling of the inner liposomal leaflet in reconstituted membrane systems for studying proton pumping activities in a quantitative fashion, as demonstrated by assaying the activity of a plant plasma membrane H+-ATPase. Furthermore, the short-chain lipid-conjugated pH sensors enable the monitoring of pH changes from neutral to acidic conditions in the endocytic pathway of living cells. Collectively, our results demonstrate the applicability of short-chain lipid-conjugated sensors for in vivo and in vitro studies and thus pave the way for the design of lipid-conjugated sensors selective to other biologically relevant ions, e.g. calcium and sodium.

摘要

离子传感器的设计对于研究细胞内的离子动力学具有重要意义,荧光质子纳米传感器因其在监测生物微区室和重组膜系统中的 pH 梯度方面的适用性而引起了特别关注。在这项工作中,我们描述了基于胺反应性 pHrodo 酯和短链磷酸乙醇胺脂质衍生物的 pH 传感器的改进合成、光物理性质和应用。这些新型探针的主要特点包括在酸性条件下具有强荧光、有效分配到膜中以及通过与白蛋白的反向交换提取。这些特性允许对重组膜系统中的内脂质体小叶进行选择性标记,以定量研究质子泵活动,如通过测定植物质膜 H+-ATPase 的活性来证明。此外,短链脂质偶联的 pH 传感器能够监测活细胞内吞途径中从中性到酸性条件的 pH 变化。总的来说,我们的结果证明了短链脂质偶联传感器在体内和体外研究中的适用性,为设计选择性针对其他生物相关离子(如钙和钠)的脂质偶联传感器铺平了道路。

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