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光感受器光循环长度的生物学意义:VIVID光循环调控动态的VIVID-白领复合体库,介导光适应及对光强变化的响应。

Biological Significance of Photoreceptor Photocycle Length: VIVID Photocycle Governs the Dynamic VIVID-White Collar Complex Pool Mediating Photo-adaptation and Response to Changes in Light Intensity.

作者信息

Dasgupta Arko, Chen Chen-Hui, Lee ChangHwan, Gladfelter Amy S, Dunlap Jay C, Loros Jennifer J

机构信息

Department of Genetics, Geisel School of Medicine, Dartmouth, Hanover, New Hampshire, United States of America.

Department of Biological Sciences, Dartmouth, Hanover, New Hampshire, United States of America.

出版信息

PLoS Genet. 2015 May 15;11(5):e1005215. doi: 10.1371/journal.pgen.1005215. eCollection 2015 May.

Abstract

Most organisms on earth sense light through the use of chromophore-bearing photoreceptive proteins with distinct and characteristic photocycle lengths, yet the biological significance of this adduct decay length is neither understood nor has been tested. In the filamentous fungus Neurospora crassa VIVID (VVD) is a critical player in the process of photoadaptation, the attenuation of light-induced responses and the ability to maintain photosensitivity in response to changing light intensities. Detailed in vitro analysis of the photochemistry of the blue light sensing, FAD binding, LOV domain of VVD has revealed residues around the site of photo-adduct formation that influence the stability of the adduct state (light state), that is, altering the photocycle length. We have examined the biological significance of VVD photocycle length to photoadaptation and report that a double substitution mutant (vvdI74VI85V), previously shown to have a very fast light to dark state reversion in vitro, shows significantly reduced interaction with the White Collar Complex (WCC) resulting in a substantial photoadaptation defect. This reduced interaction impacts photoreceptor transcription factor WHITE COLLAR-1 (WC-1) protein stability when N. crassa is exposed to light: The fast-reverting mutant VVD is unable to form a dynamic VVD-WCC pool of the size required for photoadaptation as assayed both by attenuation of gene expression and the ability to respond to increasing light intensity. Additionally, transcription of the clock gene frequency (frq) is sensitive to changing light intensity in a wild-type strain but not in the fast photo-reversion mutant indicating that the establishment of this dynamic VVD-WCC pool is essential in general photobiology and circadian biology. Thus, VVD photocycle length appears sculpted to establish a VVD-WCC reservoir of sufficient size to sustain photoadaptation while maintaining sensitivity to changing light intensity. The great diversity in photocycle kinetics among photoreceptors may be viewed as reflecting adaptive responses to specific and salient tasks required by organisms to respond to different photic environments.

摘要

地球上的大多数生物通过使用带有生色团的光感受蛋白来感知光,这些蛋白具有独特且特征性的光循环长度,但这种加合物衰减长度的生物学意义既未被理解,也未经过测试。在丝状真菌粗糙脉孢菌中,VIVID(VVD)在光适应过程、光诱导反应的衰减以及响应变化的光强度时维持光敏感性的能力中起着关键作用。对VVD蓝光感应、FAD结合、LOV结构域光化学的详细体外分析揭示了光加合物形成位点周围的残基会影响加合物状态(光状态)的稳定性,即改变光循环长度。我们研究了VVD光循环长度对光适应的生物学意义,并报告说先前在体外显示具有非常快的从光状态到暗状态逆转的双取代突变体(vvdI74VI85V)与白领复合体(WCC)的相互作用显著减少,导致严重的光适应缺陷。当粗糙脉孢菌暴露于光下时,这种减少的相互作用会影响光感受器转录因子白领-1(WC-1)蛋白的稳定性:通过基因表达的衰减和对增加的光强度作出反应的能力测定,快速逆转突变体VVD无法形成光适应所需大小的动态VVD-WCC池。此外,生物钟基因频率(frq)的转录在野生型菌株中对变化的光强度敏感,但在快速光逆转突变体中不敏感,这表明这种动态VVD-WCC池的建立在一般光生物学和昼夜节律生物学中至关重要。因此,VVD光循环长度似乎经过塑造,以建立一个足够大小的VVD-WCC库,以维持光适应,同时保持对变化的光强度的敏感性。光感受器之间光循环动力学的巨大差异可被视为反映了生物体对不同光环境作出反应所需的特定和突出任务的适应性反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5498/4433212/924bae9d3b20/pgen.1005215.g001.jpg

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