在保守的疏水口袋内的残基改变影响光、氧、电压光感受器暗恢复。

IF 3.2 3区 化学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Stefanie Hemmer, Marianne Schulte, Esther Knieps-Grünhagen, Joachim Granzin, Dieter Willbold, Karl-Erich Jaeger, Renu Batra-Safferling, Vineet Panwalkar, Ulrich Krauss
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引用次数: 2

摘要

光、氧、电压(LOV)光感受器广泛分布于所有生命领域,近年来由于其模块化特性,被广泛用作构建光遗传学工具的传感器领域。为了理解光感受器的功能以及光遗传学工具的设计和微调,详细了解LOV信号范式背后的光物理、光化学和结构变化是有帮助的。改变光加合物信号状态寿命的突变代表了一个方便的手柄来调节LOV传感器的开/关动力学,因此,光感受器(或光遗传开关)的稳态开/关平衡。然而,这种突变在理想情况下应该只影响传感器动力学,而就由光照引起的结构变化的性质而言是良性的,即它们不应导致信号转导的中断。在本研究中,我们确定了一个保守的疏水口袋,其突变对不同LOV光感受器家族的加合态寿命有强烈影响。利用慢循环细菌短LOV光感受器PpSB1-LOV,我们发现该口袋内的I48T突变加速了加合物的破裂,在结构和机械上是良性的,即,通过核磁共振波谱和x射线晶体学探测,光诱导的结构变化在变异中没有改变。PpSB1-LOV口袋内的其他突变以及枯草芽孢杆菌和燕麦LOV2结构域中LOV光受体YtvA的同源突变的引入导致了类似的动力学改变。考虑到相应结构区域的保守性,这里发现的突变应该在光遗传工具和LOV光感受器的暗恢复调谐中得到应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Residue alterations within a conserved hydrophobic pocket influence light, oxygen, voltage photoreceptor dark recovery.

Light, oxygen, voltage (LOV) photoreceptors are widely distributed throughout all kingdoms of life, and have in recent years, due to their modular nature, been broadly used as sensor domains for the construction of optogenetic tools. For understanding photoreceptor function as well as for optogenetic tool design and fine-tuning, a detailed knowledge of the photophysics, photochemistry, and structural changes underlying the LOV signaling paradigm is instrumental. Mutations that alter the lifetime of the photo-adduct signaling state represent a convenient handle to tune LOV sensor on/off kinetics and, thus, steady-state on/off equilibria of the photoreceptor (or optogenetic switch). Such mutations, however, should ideally only influence sensor kinetics, while being benign with regard to the nature of the structural changes that are induced by illumination, i.e., they should not result in a disruption of signal transduction. In the present study, we identify a conserved hydrophobic pocket for which mutations have a strong impact on the adduct-state lifetime across different LOV photoreceptor families. Using the slow cycling bacterial short LOV photoreceptor PpSB1-LOV, we show that the I48T mutation within this pocket, which accelerates adduct rupture, is otherwise structurally and mechanistically benign, i.e., light-induced structural changes, as probed by NMR spectroscopy and X-ray crystallography, are not altered in the variant. Additional mutations within the pocket of PpSB1-LOV and the introduction of homologous mutations in the LOV photoreceptor YtvA of Bacillus subtilis and the Avena sativa LOV2 domain result in similarly altered kinetics. Given the conserved nature of the corresponding structural region, the here identified mutations should find application in dark-recovery tuning of optogenetic tools and LOV photoreceptors, alike.

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来源期刊
Photochemical & Photobiological Sciences
Photochemical & Photobiological Sciences 生物-生化与分子生物学
CiteScore
5.60
自引率
6.50%
发文量
201
审稿时长
2.3 months
期刊介绍: A society-owned journal publishing high quality research on all aspects of photochemistry and photobiology.
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