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Functional conservation of light oxygen or voltage domains in light sensing

机译:光感测中光氧或电压域的功能守恒

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摘要

In Neurospora, the flavin adenine dinucleotide-containing protein WHITE COLLAR-1 is the blue-light photoreceptor for the circadian clock and other light responses. The putative chromophore-binding domain of WC-1, its light, oxygen, or voltage (LOV) domain, is similar to the LOV domains found in the plant phototropins, the Neurospora VIVID (VVD) protein, and the Arabidopsis FKF1 and its related proteins. Studies of the plant phototropins have identified 11 flavin-contacting residues that are also conserved in the LOV domains of WC-1, VVD, and FKF1. In this study, by mutating the putative WC-1 flavin-binding sites, we show that these sites are important for the light function of the protein, suggesting that the WC-1 LOV domain adapts a structure similar to that of the phototropin LOV domains. By creating a Neurospora strain in which the LOV domain of WC-1 is swapped with that of VVD, we show that the LOV domain of VVD partially replaces the function of the WC-1 LOV domain, suggesting that VVD is a wc-dependent photoreceptor in Neurospora. Furthermore, we show that the Neurosporastrains containing a chimeric WC-1 protein with the LOV domain from FKF1 or phot1 can also sense light, suggesting that FKF1 and its related proteins are light sensors in Arabidopsis. Taken together, our data suggest that these LOV domains are structurally similar protein modules involved in blue-light sensing.
机译:在Neurospora中,含有黄素腺嘌呤二核苷酸的蛋白质WHITE COLLAR-1是昼夜节律和其他光反应的蓝光感光体。推定的WC-1的发色团结合域,其光,氧或电压(LOV)域与植物光蛋白,神经孢子VIVID(VVD)蛋白和拟南芥FKF1及其相关基因中的LOV域相似蛋白质。植物光蛋白的研究已经确定了11个黄素接触残基,它们在WC-1,VVD和FKF1的LOV域中也保守。在这项研究中,通过突变推定的WC-1黄素结合位点,我们显示这些位点对于蛋白质的光功能很重要,表明WC-1 LOV结构域适应了与光养蛋白LOV域相似的结构。通过创建其中WC-1的LOV结构域与VVD的LOV结构域互换的Neurospora菌株,我们显示出VVD的LOV结构域部分替代了WC-1 LOV结构域的功能,这表明VVD是wc依赖的感光体在Neurospora中。此外,我们显示包含带有FKF1或phot1的LOV结构域的嵌合WC-1蛋白的Neurosporastrains也可以感应光,表明FKF1及其相关蛋白是拟南芥中的光传感器。综上所述,我们的数据表明这些LOV结构域是涉及蓝光传感的结构相似的蛋白质模块。

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