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Effects of missense mutation on structure and function of photoreceptor

机译:错义突变对感光细胞结构和功能的影响

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摘要

Phytochromes (PHYs) are photoreceptors of the red (R ~660  nm) and far-red (FR ~730 nm) light, and they control a wide range of responses affecting crucial aspects of plant life. There are five genes PHYA-PHYE encoding for phytochromes of different but overlapping function. One of these, PHYA has the unique function controlling specific responses in high irradiance far-red, as well as in very weak light. Appropriate PHYA functioning requires not only the photoreversibility of molecule but also the proper nuclear localization and degradation of receptor. Recently, we identified and described a mutant PHYA allele (phyA-5) in Arabidopsis thaliana, which showed reduced binding affinity to FHY1/FHL, the proteins regulating its nuclear transport, resulting in impaired nuclear localization and altered signaling under certain conditions. We present here a hypothesis to explain how the identified amino acid substitution may lead to structural changes manifested as altered signaling and phenotype displayed by the phyA-5 mutant.
机译:植物色素(PHYs)是红色(R〜660 nm)和远红色(FR〜730 nm)光的感光体,它们控制着影响植物生命关键方面的多种响应。有五个基因PHYA-PHYE编码功能不同但重叠的植物色素。其中之一,PHYA具有独特的功能,可控制在高辐射远红外以及在非常弱的光线下的特定响应。适当的PHYA功能不仅需要分子的光可逆性,还需要适当的核定位和受体降解。最近,我们在拟南芥中鉴定并描述了一个突变PHYA等位基因(phyA-5),该突变体与FHY1 / FHL的结合亲和力降低,该蛋白调节其核转运,从而在某些条件下导致核定位受损和信号传导改变。我们在这里提出一个假设,以解释所识别的氨基酸取代如何可能导致以phyA-5突变体显示的信号和表型改变为特征的结构变化。

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