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利用 Phos-tag Magenta/Cyan 荧光染料定量监测细菌信号系统中 His 和 Asp 的磷酸化。

Quantitative monitoring of His and Asp phosphorylation in a bacterial signaling system by using Phos-tag Magenta/Cyan fluorescent dyes.

机构信息

Department of Functional Molecular Science, Institute of Biomedical and Health Sciences, Hiroshima University, Hiroshima, Japan.

Department of Science and Technology on Food Safety, Faculty of Biology-Oriented Science and Technology, Kindai University, Wakayama, Japan.

出版信息

Electrophoresis. 2019 Nov;40(22):3005-3013. doi: 10.1002/elps.201900261. Epub 2019 Sep 16.

DOI:10.1002/elps.201900261
PMID:31495938
Abstract

In the bacterial signaling mechanisms known as two-component systems (TCSs), signals are generally conveyed by means of a His-Asp phosphorelay. Each system consists of a histidine kinase (HK) and its cognate response regulator. Because of the labile nature of phosphorylated His and Asp residues, few approaches are available that permit a quantitative analysis of their phosphorylation status. Here, we show that the Phos-tag dye technology is suitable for the fluorescent detection of His- and Asp-phosphorylated proteins separated by SDS-PAGE. The dynamics of the His-Asp phosphorelay of recombinant EnvZ-OmpR, a TCS derived from Escherichia coli, were examined by SDS-PAGE followed by simple rapid staining with Phos-tag Magenta fluorescent dye. The technique permitted not only the quantitative monitoring of the autophosphorylation reactions of EnvZ and OmpR in the presence of adenosine triphosphate (ATP) or acetyl phosphate, respectively, but also that of the phosphotransfer reaction from EnvZ to OmpR, which occurs within 1 min in the presence of ATP. Furthermore, we demonstrate profiling of waldiomycin, an HK inhibitor, by using the Phos-tag Cyan gel staining. We believe that the Phos-tag dye technology provides a simple and convenient fluorometric approach for screening of HK inhibitors that have potential as new antimicrobial agents.

摘要

在被称为双组分系统 (TCS) 的细菌信号机制中,信号通常通过 His-Asp 磷酸传递。每个系统由一个组氨酸激酶 (HK) 和其同源的响应调节剂组成。由于磷酸化 His 和 Asp 残基的不稳定性,很少有方法可以定量分析它们的磷酸化状态。在这里,我们表明 Phos-tag 染料技术适用于 SDS-PAGE 分离的 His 和 Asp 磷酸化蛋白的荧光检测。通过 SDS-PAGE 后用 Phos-tag Magenta 荧光染料进行简单快速染色,研究了源自大肠杆菌的 TCS EnvZ-OmpR 的 His-Asp 磷酸传递反应的动力学。该技术不仅允许定量监测 ATP 或乙酰磷酸存在下 EnvZ 和 OmpR 的自磷酸化反应,还允许在 ATP 存在下在 1 分钟内发生的从 EnvZ 到 OmpR 的磷酸转移反应。此外,我们通过使用 Phos-tag Cyan 凝胶染色来证明 Waldiomycin(一种 HK 抑制剂)的分析。我们相信 Phos-tag 染料技术为筛选具有作为新型抗菌剂潜力的 HK 抑制剂提供了一种简单方便的荧光方法。

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