Department of Life Sciences (Biology), Graduate School of Art and Sciences, University of Tokyo, Komaba 3-8-1, Meguro, Tokyo, 153-8902 Japan.
Plant Cell Physiol. 2011 Dec;52(12):2214-24. doi: 10.1093/pcp/pcr155. Epub 2011 Nov 7.
Two wild-type substrains of a motile cyanobacterium Synechocystis sp. PCC 6803 show positive phototaxis toward a light source (PCC-P) and negative phototaxis away from light (PCC-N). In this study, we found that a novel two-component system of photoresponse is involved in the phototactic regulation. Inactivation of slr1212 (pixA), which encodes a photoreceptor histidine kinase, reverted the positive phototaxis of PCC-P to negative phototaxis, and inactivation of the downstream slr1213 (nixB) and slr1214 (nixC), which encode AraC-like transcription factor-type and PatA-type response regulators, respectively, reverted the negative phototaxis of PCC-N to positive phototaxis. Opposite effects of pixA and nixBC disruption implies an unexpected signal transduction pathway in the switching of positive and negative phototaxis. The blue/green-type cyanobacteriochrome GAF domain of PixA was expressed in Synechocystis and phycocyanobilin-producing Escherichia coli. The holoprotein covalently bound a chromophore phycoviolobilin and showed reversible photoconversion between the violet- (Pv, λ(peak) = 396 nm) and green-absorbing (Pg, λ(peak) = 533 nm) forms, although the protein from E. coli partially bound a precursor phycocyanobilin. These results were discussed with regard to an idea that PixA serves as a violet light receptor for switching of positive and negative phototaxis by transcriptional and functional regulation.
两个野生型亚系的运动蓝藻集胞藻 PCC 6803 对光源表现出正向光趋性(PCC-P)和负向光趋性(PCC-N)。在本研究中,我们发现一种新的光反应两元件系统参与了光趋性调控。失活 slr1212(pixA),其编码一个光受体组氨酸激酶,将 PCC-P 的正向光趋性逆转为负向光趋性,失活下游的 slr1213(nixB)和 slr1214(nixC),它们分别编码 AraC 样转录因子型和 PatA 型反应调节蛋白,将 PCC-N 的负向光趋性逆转为正向光趋性。pixA 和 nixBC 缺失的相反作用暗示了正向和负向光趋性转换中的一个意想不到的信号转导途径。PixA 的蓝/绿型蓝藻视紫红质 GAF 结构域在集胞藻和产藻蓝胆素的大肠杆菌中表达。全蛋白共价结合发色团藻胆胆素,并在紫(Pv,λ(峰)= 396nm)和绿吸收(Pg,λ(峰)= 533nm)形式之间表现出可逆的光致变色,尽管来自大肠杆菌的蛋白部分结合了前体藻胆胆素。这些结果与一个观点有关,即 PixA 作为一个紫光灯受体,通过转录和功能调节来切换正向和负向光趋性。