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Blue light–excited LOV1 and LOV2 domains cooperatively regulate the kinase activity of full-length phototropin2 from Arabidopsis

机译:蓝光激发的LOV1和LOV2域协同调节拟南芥全长phototropin2的激酶活性

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摘要

Phototropin2 (phot2) is a blue-light (BL) receptor that regulates BL-dependent activities for efficient photosynthesis in plants. phot2 comprises two BL-receiving light-oxygen-voltage–sensing domains (LOV1 and LOV2) and a kinase domain. BL-excited LOV2 is thought to be primarily responsible for the BL-dependent activation of the kinase. However, the molecular mechanisms by which small BL-induced conformational changes in the LOV2 domain are transmitted to the kinase remain unclear. Here, we used full-length wild-type and mutant phot2 proteins from Arabidopsis to study their molecular properties in the dark and under BL irradiation. Phosphorylation assays and absorption measurements indicated that the LOV1 domain assists the thermal relaxation of BL-excited LOV2 and vice versa. Using small-angle X-ray scattering and electron microscopy, we observed that phot2 forms a dimer and has a rod shape with a maximum length of 188 Å and a radius of gyration of 44 Å. Under BL, phot2 displayed large conformational changes that bent the rod shape. By superimposing the crystal structures of the LOV1 dimer, LOV2, and a homology model of the kinase to the observed changes, we inferred that the BL-dependent change consisted of positional shifts of both LOV2 and the kinase relative to LOV1. Furthermore, phot2 mutants lacking the photocycle in LOV1 or LOV2 still exhibited conformational changes under BL, suggesting that LOV1 and LOV2 cooperatively contribute to the conformational changes that activate the kinase. These results suggest that BL-activated LOV1 contributes to the kinase activity of phot2. We discuss the possible intramolecular interactions and signaling mechanisms in phot2.
机译:Phototropin2(phot2)是一种蓝光(BL)受体,可调节BL依赖性活性,以实现植物的有效光合作用。 phot2包含两个BL接收光氧电压感应域(LOV1和LOV2)和一个激酶域。 BL激发的LOV2被认为主要负责激酶的BL依赖性激活。然而,尚不清楚由BL诱导的LOV2结构域中的小构象变化传递给激酶的分子机制。在这里,我们使用了拟南芥的全长野生型和突变型phot2蛋白来研究它们在黑暗和BL照射下的分子特性。磷酸化测定和吸收测量表明,LOV1结构域有助于BL激发的LOV2的热弛豫,反之亦然。使用小角度X射线散射和电子显微镜观察,我们发现phot2形成了一个二聚体,并具有最大长度为188Å和回转半径为44Å的棒状。在BL下,phot2显示出较大的构象变化,使杆形弯曲。通过将LOV1二聚体,LOV2的晶体结构和激酶的同源性模型与观察到的变化相叠加,我们推断BL依赖的变化包括LOV2和激酶相对于LOV1的位置偏移。此外,在LOV1或LOV2中缺少光循环的phot2突变体在BL下仍显示构象变化,这表明LOV1和LOV2共同参与激活激酶的构象变化。这些结果表明BL激活的LOV1有助于phot2的激酶活性。我们讨论了phot2中可能的分子内相互作用和信号传导机制。

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