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Design and probing of efflux functions of EGFP fused ABC membrane transporters in live cells using fluorescence spectroscopy

机译:利用荧光光谱技术设计和探究EGFP融合ABC膜转运蛋白在活细胞中的外排功能

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We have designed and constructed fusion genes of C-terminal (Ct) or N-terminal (Nt) bmrA with EGFP vectors and successfully expressed them in ΔBmrA (BmrA deletion strain of Bacillus subtilis), generating two new strains of B. subtilis (Ct-BmrA-EGFP and Nt-BmrA-EGFP). The fusion genes were characterized using gel electrophoresis and DNA sequencing. Their expression in live cells was determined by measuring the fluorescence of EGFP in single live cells using fluorescence microscopy and spectroscopy. The efflux function of the new strains was studied by measuring their accumulation kinetics of intracellular Hoechst dye molecules (a pump substrate) using fluorescence spectroscopy, which were compared with wild-type (WT-BmrA) and ΔBmrA strains. Both new strains show lower accumulation rates than ΔBmrA, and their efflux kinetics are inhibited by a pump inhibitor (orthovanadate). The results suggest that both strains extrude the dye molecules and the fusion proteins retain the efflux function of BmrA (ATP-binding cassette, ABC, transporter). Notably, Nt-BmrA-EGFP strain shows lower accumulation rates (higher efflux rates) than Ct-BmrA-EGFP. Modeled structures of the fusion proteins illustrate a highly flexible linker region connecting EGFP with BmrA, suggesting a minimal obstruction of EGFP to the BmrA. A closer distance of two C termini (∼14 Å) than two N termini (47.9 Å) of the “closed” BmrA dimer depicts the larger steric effect of C-terminal fusion. This study also shows that glucose affects the fluorescence study of efflux function of BmrA, suggesting that efflux kinetics of ABC membrane transporters in live cells must be characterized in the absence of glucose.
机译:我们设计并构建了带有EGFP载体的C末端(Ct)或N末端(Nt)bmrA融合基因,并在ΔBmrA(枯草芽孢杆菌的BmrA缺失菌株)中成功表达了它们,从而产生了两个新的枯草芽孢杆菌(Ct)菌株。 -BmrA-EGFP和Nt-BmrA-EGFP)。使用凝胶电泳和DNA测序来表征融合基因。通过使用荧光显微镜和光谱法测量单个活细胞中EGFP的荧光来确定它们在活细胞中的表达。通过使用荧光光谱法测量细胞内Hoechst染料分子(泵底物)的蓄积动力学,研究了新菌株的外排功能,并将其与野生型(WT-BmrA)和ΔBmrA菌株进行了比较。两种新菌株均显示出比ΔBmrA更低的积累速率,并且它们的外排动力学受到泵抑制剂(原钒酸盐)的抑制。结果表明,两种菌株都挤出了染料分子,并且融合蛋白保留了BmrA(ATP结合盒,ABC,转运蛋白)的外排功能。值得注意的是,与Ct-BmrA-EGFP相比,Nt-BmrA-EGFP菌株显示出较低的积聚率(较高的外排率)。融合蛋白的建模结构说明了将EGFP与BmrA连接的高度灵活的连接子区域,表明EGFP对BmrA的阻碍最小。 “闭合” BmrA二聚体的两个C末端(〜14Å)比两个N末端(47.9Å)更近,这说明C端融合的空间效应更大。这项研究还表明,葡萄糖会影响BmrA外排功能的荧光研究,表明必须在不存在葡萄糖的情况下表征活细胞中ABC膜转运蛋白的外排动力学。

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