Veetil Sindhu Kandoth, Mittal Chitvan, Ranjan Peeyush, Kateriya Suneel
Department of Biochemistry, University of Delhi South Campus, Benito Juares Road, New Delhi-110021, India.
Biochim Biophys Acta. 2011 Jul;1810(7):675-82. doi: 10.1016/j.bbagen.2011.04.008. Epub 2011 Apr 29.
Phototropins are UV-A/blue light receptor proteins with two LOV (Light-Oxygen-Voltage) sensor domains at their N terminus and a kinase domain at the C-terminus in photoautotrophic organisms. This is the first research report of a canonical phototropin from marine algae Ostreococcus tauri.
We synthesized core LOV1 (OtLOV1) domain-encoding portion of the phototropin gene of O. tauri, the domain was heterologously expressed, purified and assessed for its spectral properties and dark recovery kinetics by UV-Visible, fluorescence spectroscopy and mutational studies. Quaternary structure characteristics were studied by SEC and glutaraldehyde crosslinking.
The absorption spectrum of OtLOV1 lacks the characteristic 361nm peak shown by other LOV1 domains. It undergoes a photocycle with a dark state recovery time of approximately 30min (τ=300.35s). Native OtLOV1 stayed as dimer in aqueous solution and the dimer formation was light and concentration independent. Mutating isoleucine at 43rd position to valine accelerated the dark recovery time by more than 10-fold. Mutating it to serine reduced sensitivity to blue light, but the dark recovery time remained unaltered. I43S mutation also destabilized the FMN binding to a great extent.
The OtLOV1 domain of the newly identified OtPhot is functional and the isoleucine at position 43 of OtLOV1 is the key residue responsible for fine-tuning the domain properties.
This is the first characterized LOV1 domain of a canonical phototropin from a marine alga and spectral properties of the domain are similar to that of the LOV1 domain of higher plants.
向光素是光自养生物中N端具有两个LOV(光-氧-电压)传感结构域且C端具有激酶结构域的UV-A/蓝光受体蛋白。这是关于海洋绿藻莱茵衣藻中典型向光素的首篇研究报告。
我们合成了莱茵衣藻向光素基因的核心LOV1(OtLOV1)结构域编码部分,对该结构域进行异源表达、纯化,并通过紫外可见光谱、荧光光谱和突变研究评估其光谱特性和暗恢复动力学。通过尺寸排阻色谱和戊二醛交联研究四级结构特征。
OtLOV1的吸收光谱缺乏其他LOV1结构域所具有的特征性361nm峰。它经历一个光循环,暗态恢复时间约为30分钟(τ=300.35秒)。天然OtLOV1在水溶液中以二聚体形式存在,二聚体形成与光和浓度无关。将第43位的异亮氨酸突变为缬氨酸可使暗恢复时间加快10倍以上。将其突变为丝氨酸会降低对蓝光的敏感性,但暗恢复时间保持不变。I43S突变也在很大程度上使FMN结合不稳定。
新鉴定的OtPhot的OtLOV1结构域具有功能,OtLOV1第43位的异亮氨酸是负责微调该结构域特性的关键残基。
这是首个对来自海洋藻类的典型向光素的LOV1结构域进行表征的研究,该结构域的光谱特性与高等植物的LOV1结构域相似。