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首页> 外文期刊>The Plant Cell >The UV-B photoreceptor UVR8: from structure to physiology.
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The UV-B photoreceptor UVR8: from structure to physiology.

机译:UV-B感光体UVR8:从结构到生理学。

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摘要

Low doses of UV-B light (280 to 315 nm) elicit photomorphogenic responses in plants that modify biochemical composition, photosynthetic competence, morphogenesis, and defense. UV RESISTANCE LOCUS8 (UVR8) mediates photomorphogenic responses to UV-B by regulating transcription of a set of target genes. UVR8 differs from other known photoreceptors in that it uses specific Trp amino acids instead of a prosthetic chromophore for light absorption during UV-B photoreception. Absorption of UV-B dissociates the UVR8 dimer into monomers, initiating signal transduction through interaction with CONSTITUTIVELY PHOTOMORPHOGENIC1. However, much remains to be learned about the physiological role of UVR8 and its interaction with other signaling pathways, the molecular mechanism of UVR8 photoreception, how the UVR8 protein initiates signaling, how it is regulated, and how UVR8 regulates transcription of its target genes.
机译:低剂量的UV-B光(280至315 nm)在植物中引起光形态发生反应,从而改变生物化学组成,光合能力,形态发生和防御能力。紫外线抵抗力LOCUS8(UVR8)通过调节一组靶基因的转录介导对UV-B的光形态反应。 UVR8与其他已知的感光体的不同之处在于,它在UV-B感光期间使用特定的Trp氨基酸代替了人工发色团来吸收光。 UV-B的吸收将UVR8二聚体解离为单体,通过与组成型光致发光剂1相互作用而启动信号转导。但是,关于UVR8的生理学作用及其与其他信号传导途径的相互作用,UVR8光接收的分子机制,UVR8蛋白如何启动信号传导,如何对其进行调控以及UVR8如何调控其靶基因的转录,还有许多事情要学习。

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