Center for Biological Resources and Informatics, Tokyo Institute of Technology, Yokohama 226-8501, Japan.
Biochemistry. 2013 Feb 19;52(7):1272-9. doi: 10.1021/bi301004v. Epub 2013 Feb 7.
PixD is a blue light-using flavin (BLUF) photoreceptor that controls phototaxis in the cyanobacterium Synechocystis sp. PCC6803. PixD interacts with the response regulator-like protein PixE in a light-dependent manner, and this interaction is critical for light signal transduction in vivo. However, the structure of the PixD-PixE complex has not been determined. To improve our understanding of how PixD transmits its captured light signal to PixE, we used blue-native polyacrylamide gel electrophoresis to characterize the molecular mass of a recombinant PixD-PixE complex purified from Escherichia coli and found it to be 342 kDa, suggesting that the complex contains 10 PixD and 4 PixE monomers. The stoichiometry of the complex was confirmed by Western blotting. Specifically, three intermediate states, PixD(10)-PixE(1), PixD(10)-PixE(2), and PixD(10)-PixE(3), were detected. The apparent dissociation constant for PixE and PixD is ~5 μM. A docking simulation was performed using a modeled PixE structure and the PixD(10) crystal structure. The docking simulation showed how the molecules in the PixD(10)-PixE(4) structure interact. To verify the accuracy of the docked model, a site-directed mutagenesis study was performed in which Arg80 of PixE, which appears to be capable of interacting electrostatically with Asp135 of PixD in the predicted structure, was shown to be critical for complex formation as mutation of PixE Arg80 to Asp or Ala prevented PixD-PixE complex formation. This study provides a structural basis for future investigations of the light signal transduction mechanism involving PixD and PixE.
PixD 是一种蓝光利用黄素(BLUF)光受体,它控制着集胞藻 6803 中的趋光性。PixD 以光依赖性的方式与响应调节蛋白样蛋白 PixE 相互作用,这种相互作用对于体内光信号转导至关重要。然而,PixD-PixE 复合物的结构尚未确定。为了更好地理解 PixD 如何将其捕获的光信号传递给 PixE,我们使用蓝色非变性聚丙烯酰胺凝胶电泳来表征从大肠杆菌中纯化的重组 PixD-PixE 复合物的分子量,发现其分子量为 342 kDa,表明该复合物含有 10 个 PixD 和 4 个 PixE 单体。通过 Western 印迹法证实了复合物的化学计量比。具体而言,检测到三个中间状态,即 PixD(10)-PixE(1)、PixD(10)-PixE(2)和 PixD(10)-PixE(3)。PixE 和 PixD 的表观解离常数约为 5 μM。使用模拟的 PixE 结构和 PixD(10)晶体结构进行了对接模拟。对接模拟显示了 PixD(10)-PixE(4)结构中分子的相互作用方式。为了验证对接模型的准确性,进行了定点突变研究,其中突变的 PixE Arg80 似乎能够与预测结构中 PixD 的 Asp135 静电相互作用,表明对于复合物形成至关重要,因为突变 PixE Arg80 为 Asp 或 Ala 会阻止 PixD-PixE 复合物的形成。这项研究为未来研究涉及 PixD 和 PixE 的光信号转导机制提供了结构基础。