Azuma Nobuhiro, Kanamaru Kyoko, Matsushika Akinori, Yamashino Takafumi, Mizuno Takeshi, Kato Masashi, Kobayashi Tetsuo
Laboratory of Gene Regulation, Graduate School of Bioagricultural Sciences, Nagoya University, Japan.
Biosci Biotechnol Biochem. 2007 Oct;71(10):2493-502. doi: 10.1271/bbb.70292. Epub 2007 Oct 7.
His-Asp phosphorelays are widespread signal transduction mechanisms in bacteria, fungi, and higher plants. In order to investigate a His-Asp phosphorelay network in filamentous fungi, which has been genetically characterized in part, we attempted to construct an in vitro phosphotransfer network in Aspergillus nidulans comprising all the necessary components. As a first step, we established an in vitro phosphotransfer system with a histidine-containing phosphotransmitter YpdA, a response regulator SrrA, and a bacterial histidine kinase ArcB as a phosphate donor. We demonstrated the phosphotransfer from ArcB to A. nidulans YpdA and the subsequent transfer from YpdA to SrrA. This is the first direct biochemical evidence for the presence of the phosphotransfer system in filamentous fungi. Furthermore, a retrograde phosphorylation from YpdA to FphA, a histidine kinase similar to bacterial phytochrome, was found. The overall picture of the His-Asp phosphorelays in A. nidulans is discussed based on the results of the in vitro study.
组氨酸 - 天冬氨酸磷酸化信号转导途径是细菌、真菌和高等植物中广泛存在的信号转导机制。为了研究丝状真菌中的组氨酸 - 天冬氨酸磷酸化信号转导网络(该网络已部分进行了遗传学特征分析),我们试图构建一个构巢曲霉中的体外磷酸转移网络,该网络包含所有必要的组分。作为第一步,我们建立了一个体外磷酸转移系统,该系统包含含组氨酸的磷酸传递体YpdA、应答调节因子SrrA以及作为磷酸盐供体的细菌组氨酸激酶ArcB。我们证明了磷酸从ArcB转移至构巢曲霉的YpdA,随后又从YpdA转移至SrrA。这是丝状真菌中存在磷酸转移系统的首个直接生化证据。此外,还发现了从YpdA到FphA(一种类似于细菌光敏色素的组氨酸激酶)的逆向磷酸化。基于体外研究结果,讨论了构巢曲霉中组氨酸 - 天冬氨酸磷酸化信号转导途径的整体情况。