Hisatomi Osamu, Nakatani Yoichi, Takeuchi Ken, Takahashi Fumio, Kataoka Hironao
From the Department of Earth and Space Science, Graduate School of Science, Osaka University, Toyonaka, Osaka 560-0043,
From the Department of Earth and Space Science, Graduate School of Science, Osaka University, Toyonaka, Osaka 560-0043.
J Biol Chem. 2014 Jun 20;289(25):17379-91. doi: 10.1074/jbc.M114.554618. Epub 2014 May 1.
Aureochrome-1 (AUREO1) is a blue light (BL) receptor that mediates the branching response in stramenopile alga, Vaucheria frigida. AUREO1 contains a basic leucine zipper (bZIP) domain in the central region and a light-oxygen-voltage sensing (LOV) domain at the C terminus, and has been suggested to function as a light-regulated transcription factor. We have previously reported that preparations of recombinant AUREO1 contained the complete coding sequence (full-length, FL) and N-terminal truncated protein (ZL) containing bZIP and LOV domains, and suggested that wild-type ZL (ZLwt2) was in a dimer form with intermolecular disulfide linkages at Cys(162) and Cys(182) (Hisatomi, O., Takeuchi, K., Zikihara, K., Ookubo, Y., Nakatani, Y., Takahashi, F., Tokutomi, S., and Kataoka, H. (2013) Plant Cell Physiol. 54, 93-106). In the present study, we report the photoreactions, oligomeric structures, and DNA binding of monomeric cysteine to serine-mutated ZL (ZLC2S), DTT-treated ZL (DTT-ZL), and FL (DTT-FL). Recombinant AUREO1 showed similar spectral properties and dark regeneration kinetics to those of dimeric ZLwt2. Dynamic light scattering and size exclusion chromatography revealed that ZLC2S and DTT-ZL were monomeric in the dark state. Dissociation of intermolecular disulfide bonds of ZLwt2 was in equilibrium with a midpoint oxidation-redox potential of approximately -245 ± 15 mV. BL induced the dimerization of monomeric ZL, which subsequently increased its affinity for the target sequence. Also, DTT-FL was monomeric in the dark state and underwent BL-induced dimerization, which led to formation of the FL2·DNA complex. Taken together, our results suggest that monomeric AUREO1 is present in vivo, with dimerization playing a key role in its role as a BL-regulated transcription factor.
金藻素-1(AUREO1)是一种蓝光(BL)受体,介导硅藻门藻类——冷水浒苔的分支反应。AUREO1在中央区域含有一个碱性亮氨酸拉链(bZIP)结构域,在C端含有一个光-氧-电压感应(LOV)结构域,并且被认为作为一种光调节转录因子发挥作用。我们之前报道过,重组AUREO1的制剂包含完整编码序列(全长,FL)以及含有bZIP和LOV结构域的N端截短蛋白(ZL),并表明野生型ZL(ZLwt2)呈二聚体形式,在半胱氨酸(162)和半胱氨酸(182)处有分子间二硫键连接(久富美,O.,竹内,K.,紫原,K.,大久保,Y.,中谷,Y.,高桥,F.,德富美,S.,和片冈,H.(2013年)植物细胞生理学。54,93 - 106)。在本研究中,我们报道了单体半胱氨酸到丝氨酸突变的ZL(ZLC2S)、二硫苏糖醇处理的ZL(DTT - ZL)和FL(DTT - FL)的光反应、寡聚结构和DNA结合情况。重组AUREO1表现出与二聚体ZLwt2相似的光谱特性和暗再生动力学。动态光散射和尺寸排阻色谱显示,ZLC2S和DTT - ZL在黑暗状态下是单体。ZLwt2分子间二硫键的解离处于平衡状态,中点氧化还原电位约为 - 245 ± 15 mV。蓝光诱导单体ZL二聚化,随后增加其对靶序列的亲和力。此外,DTT - FL在黑暗状态下是单体,并经历蓝光诱导的二聚化,这导致形成FL2·DNA复合物。综上所述,我们的结果表明单体AUREO1存在于体内,二聚化在其作为蓝光调节转录因子的作用中起关键作用。