首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Blue Light-excited Light-Oxygen-Voltage-sensing Domain 2 (LOV2) Triggers a Rearrangement of the Kinase Domain to Induce Phosphorylation Activity in Arabidopsis Phototropin1
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Blue Light-excited Light-Oxygen-Voltage-sensing Domain 2 (LOV2) Triggers a Rearrangement of the Kinase Domain to Induce Phosphorylation Activity in Arabidopsis Phototropin1

机译:蓝光激发的光氧电压感应域2(LOV2)触发激酶域的重排以诱导拟南芥Phototropin1的磷酸化活性。

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摘要

Phototropin1 is a blue light (BL) receptor in plants and shows BL-dependent kinase activation. The BL-excited light-oxygen-voltage-sensing domain 2 (LOV2) is primarily responsible for the activation of the kinase domain; however, the molecular mechanism by which conformational changes in LOV2 are transmitted to the kinase domain remains unclear. Here, we investigated BL-induced structural changes of a minimum functional fragment of Arabidopsis phototropin1 composed of LOV2, the kinase domain, and a linker connecting the two domains using small-angle x-ray scattering (SAXS). The fragment existed as a dimer and displayed photoreversible SAXS changes reflected in the radii of gyration of 42.9 Å in the dark and 48.8 Å under BL irradiation. In the dark, the molecular shape reconstructed from the SAXS profiles appeared as two bean-shaped lobes in a twisted arrangement that was 170 Å long, 80 Å wide, and 50 Å thick. The molecular shape under BL became slightly elongated from that in the dark. By fitting the crystal structure of the LOV2 dimer and a homology model of the kinase domain to their inferred shapes, the BL-dependent change could be interpreted as the positional shift in the kinase domain relative to that of the LOV2 dimer. In addition, we found that lysine 475, a functionally important residue, in the N-terminal region of LOV2 plays a critical role in transmitting the structural changes in LOV2 to the kinase domain. The interface between the domains is critical for signaling, suitably changing the structure to activate the kinase in response to conformational changes in the adjoining LOV2.
机译:Phototropin1是植物中的蓝光(BL)受体,显示BL依赖性激酶激活。 BL激发的光氧电压感测域2(LOV2)主要负责激酶域的激活。但是,尚不清楚LOV2构象变化传递到激酶结构域的分子机制。在这里,我们研究了BL诱导的拟南芥光蛋白1的最小功能片段的结构变化,该片段由LOV2,激酶结构域和使用小角度X射线散射(SAXS)连接两个结构域的接头组成。该片段以二聚体形式存在,并表现出光可逆的SAXS变化,反映在黑暗中42.9Å的旋转半径和BL辐射下48.8的回转半径。在黑暗中,从SAXS轮廓重建的分子形状显示为两个豆形的叶,呈扭曲排列,长170Å,宽80Å,厚50Å。 BL下的分子形状从黑暗中略微拉长。通过使LOV2二聚体的晶体结构和激酶结构域的同源性模型适合其推断的形状,BL依赖的变化可以解释为相对于LOV2二聚体的激酶结构域中的位置偏移。此外,我们发现,在LOV2的N端区域中,功能上重要的残基赖氨酸475在将LOV2的结构变化传递到激酶结构域中起着关键作用。结构域之间的界面对于信号传导至关重要,响应于邻接的LOV2的构象变化,适当地改变结构以激活激酶。

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