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Structure of a flavin-binding plant photoreceptor domain: Insights into light-mediated signal transduction

机译:黄素结合植物感光域的结构: 洞察光介导的信号转导

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摘要

Phototropin, a major blue-light receptor for phototropism in seed plants, exhibits blue-light-dependent autophosphorylation and contains two light, oxygen, or voltage (LOV) domains and a serine/threonine kinase domain. The LOV domains share homology with the PER-ARNT-SIM (PAS) superfamily, a diverse group of sensor proteins. Each LOV domain noncovalently binds a single FMN molecule and exhibits reversible photochemistry in vitro when expressed separately or in tandem. We have determined the crystal structure of the LOV2 domain from the phototropin segment of the chimeric fern photoreceptor phy3 to 2.7-Å resolution. The structure constitutes an FMN-binding fold that reveals how the flavin cofactor is embedded in the protein. The single LOV2 cysteine residue is located 4.2 Å from flavin atom C(4a), consistent with a model in which absorption of blue light induces formation of a covalent cysteinyl-C(4a) adduct. Residues that interact with FMN in the phototropin segment of the chimeric fern photoreceptor (phy3) LOV2 are conserved in LOV domains from phototropin of other plant species and from three proteins involved in the regulation of circadian rhythms in Arabidopsis and Neurospora. This conservation suggests that these domains exhibit the same overall fold and share a common mechanism for flavin binding and light-induced signaling.
机译:光合蛋白是种子植物中向光性的主要蓝光受体,具有蓝光依赖性自磷酸化作用,并包含两个光,氧或电压(LOV)域和一个丝氨酸/苏氨酸激酶域。 LOV域与PER-ARNT-SIM(PAS)超家族(一组不同的传感器蛋白)具有同源性。每个LOV结构域非共价结合单个FMN分子,并在分开或串联表达时在体外表现出可逆的光化学作用。我们已经确定了从嵌合蕨感光体phy3的光蛋白片段到2.7-Å分辨率的LOV2域的晶体结构。该结构构成了FMN结合折叠,揭示了黄素辅因子如何嵌入蛋白质中。单个LOV2半胱氨酸残基位于黄素原子C(4a)的4.2Å处,与其中吸收蓝光诱导形成共价半胱氨酸-C(4a)加合物的模型一致。在嵌合蕨类光感受器(phy3)LOV2的光养蛋白片段中与FMN相互作用的残基在LOV域中是保守的,其来自其他植物物种的光养蛋白以及涉及拟南芥和Neurospora中昼夜节律调节的三种蛋白质。这种保守性表明这些结构域表现出相同的整体折叠,并具有黄素结合和光诱导信号转导的共同机制。

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