Stierl Manuela, Penzkofer Alfons, Kennis John T M, Hegemann Peter, Mathes Tilo
Institut für Biologie/Experimentelle Biophysik, Humboldt Universität zu Berlin , Invalidenstrasse 42, D-10115 Berlin, Germany.
Biochemistry. 2014 Aug 12;53(31):5121-30. doi: 10.1021/bi500479v. Epub 2014 Jul 28.
Photoactivated adenylyl cyclases are powerful tools for optogenetics and for investigating signal transduction mechanisms in biological photoreceptors. Because of its large increase in enzyme activity in the light, the BLUF (blue light sensor using flavin adenine dinucleotide)-activated adenylyl cyclase (bPAC) from Beggiatoa sp. is a highly attractive model system for studying BLUF domain signaling. In this report, we studied the influence of site-directed mutations within the BLUF domain on the light regulation of the cyclase domain and determined key elements for signal transduction and color tuning. Photoactivation of the cyclase domain is accomplished via strand β5 of the BLUF domain and involves the formation of helical structures in the cyclase domain as assigned by vibrational spectroscopy. In agreement with earlier studies, we observed severely impaired signaling in mutations directly on strand β5 as well as in mutations affecting the hydrogen bond network around the flavin. Moreover, we identified a bPAC mutant with red-shifted absorbance and a decreased dark activity that is highly valuable for long-term optogenetic experiments. Additionally, we discovered a mutant that forms a stable neutral flavin semiquinone radical in the BLUF domain and surprisingly exhibits an inversion of light activation.
光激活腺苷酸环化酶是光遗传学和研究生物光感受器信号转导机制的强大工具。由于其在光照下酶活性大幅增加,来自贝氏硫菌属的蓝光利用黄素腺嘌呤二核苷酸(BLUF)激活的腺苷酸环化酶(bPAC)是研究BLUF结构域信号传导的极具吸引力的模型系统。在本报告中,我们研究了BLUF结构域内定点突变对环化酶结构域光调节的影响,并确定了信号转导和颜色调节的关键元件。环化酶结构域的光激活是通过BLUF结构域的β5链完成的,并且涉及如振动光谱所确定的环化酶结构域中螺旋结构的形成。与早期研究一致,我们观察到直接在β5链上的突变以及影响黄素周围氢键网络的突变中信号传导严重受损。此外,我们鉴定出一种bPAC突变体,其吸光度发生红移且暗活性降低,这对于长期光遗传学实验非常有价值。此外,我们发现了一种在BLUF结构域中形成稳定中性黄素半醌自由基的突变体,并且令人惊讶地表现出光激活的反转。