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Polar Localization of a Tripartite Complex of the Two-Component System DcuS/DcuR and the Transporter DctA in Escherichia coli Depends on the Sensor Kinase DcuS

机译:两组分系统DcuS / DcuR和转运蛋白DctA在大肠杆菌中的三方复合物的极性定位取决于传感器激酶DcuS。

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摘要

The C4-dicarboxylate responsive sensor kinase DcuS of the DcuS/DcuR two-component system of E. coli is membrane-bound and reveals a polar localization. DcuS uses the C4-dicarboxylate transporter DctA as a co-regulator forming DctA/DcuS sensor units. Here it is shown by fluorescence microscopy with fusion proteins that DcuS has a dynamic and preferential polar localization, even at very low expression levels. Single assemblies of DcuS had high mobility in fast time lapse acquisitions, and fast recovery in FRAP experiments, excluding polar accumulation due to aggregation. DctA and DcuR fused to derivatives of the YFP protein are dispersed in the membrane or in the cytosol, respectively, when expressed without DcuS, but co-localize with DcuS when co-expressed at appropriate levels. Thus, DcuS is required for location of DctA and DcuR at the poles and formation of tripartite DctA/DcuS/DcuR sensor/regulator complexes. Vice versa, DctA, DcuR and the alternative succinate transporter DauA were not essential for polar localization of DcuS, suggesting that the polar trapping occurs by DcuS. Cardiolipin, the high curvature at the cell poles, and the cytoskeletal protein MreB were not required for polar localization. In contrast, polar localization of DcuS required the presence of the cytoplasmic PASC and the kinase domains of DcuS.
机译:大肠杆菌DcuS / DcuR两组分系统的C4-二羧酸响应传感器激酶DcuS被膜结合,并显示出极性定位。 DcuS使用C4-二羧酸盐转运蛋白DctA作为形成DctA / DcuS传感器单元的辅助调节剂。在这里,通过融合蛋白的荧光显微术表明,即使在非常低的表达水平下,DcuS也具有动态且优先的极性定位。 DcuS的单个组件在快速延时捕获中具有很高的移动性,并且在FRAP实验中具有快速恢复的能力,不包括由于聚集引起的极性累积。当不使用DcuS表达时,与YFP蛋白衍生物融合的DctA和DcuR分别分散在膜或细胞质中,但当以适当的水平共表达时,与DcuS共同定位。因此,DctA和DcuR在极点的位置以及三方DctA / DcuS / DcuR传感器/调节剂复合物的形成需要DcuS。反之亦然,DctA,DcuR和其他琥珀酸转运蛋白DauA对于DcuS的极性定位不是必不可少的,这表明DcuS发生了极性捕获。极地定位不需要心磷脂,细胞两极的高弯曲度和细胞骨架蛋白MreB。相反,DcuS的极性定位需要细胞质PASC和DcuS激酶结构域的存在。

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