School of Chemistry , Cardiff University , Park Place , Cardiff CF10 3AT , United Kingdom.
School of Medicine , University Hospital Wales , Main Building, Heath Park , Cardiff CF14 4XN , United Kingdom.
Biochemistry. 2019 Jun 4;58(22):2608-2616. doi: 10.1021/acs.biochem.9b00255. Epub 2019 May 17.
Light-oxygen-voltage (LOV) domains are increasingly used to engineer photoresponsive biological systems. While the photochemical cycle is well documented, the allosteric mechanism by which formation of a cysteinyl-flavin adduct leads to activation is unclear. Via replacement of flavin mononucleotide (FMN) with 5-deazaflavin mononucleotide (5dFMN) in the Aureochrome1a (Au1a) transcription factor from Ochromonas danica, a thermally stable cysteinyl-5dFMN adduct was generated. High-resolution crystal structures (<2 Å) under different illumination conditions with either FMN or 5dFMN chromophores reveal three conformations of the highly conserved glutamine 293. An allosteric hydrogen bond network linking the chromophore via Gln293 to the auxiliary A'α helix is observed. With FMN, a "flip" of the Gln293 side chain occurs between dark and lit states. 5dFMN cannot hydrogen bond through the C5 position and proved to be unable to support Au1a domain dimerization. Under blue light, the Gln293 side chain instead "swings" away in a conformation distal to the chromophore and not previously observed in existing LOV domain structures. Together, the multiple side chain conformations of Gln293 and functional analysis of 5dFMN provide new insight into the structural requirements for LOV domain activation.
光氧电压(LOV)结构域被越来越多地用于工程化光响应生物系统。虽然光化学循环已有详细记录,但导致激活的半胱氨酸-黄素加合物形成的变构机制尚不清楚。通过用 5-脱氮黄素单核苷酸(5dFMN)替代来自眼虫的 Aureochrome1a(Au1a)转录因子中的黄素单核苷酸(FMN),生成了热稳定的半胱氨酸-5dFMN加合物。在不同的光照条件下,使用 FMN 或 5dFMN 发色团获得了高分辨率晶体结构(<2 Å),揭示了高度保守的谷氨酰胺 293 的三种构象。通过 Gln293 将发色团连接到辅助 A'α 螺旋的变构氢键网络被观察到。在黑暗和光照状态之间,FMN 会发生“翻转”Gln293 侧链。5dFMN 不能通过 C5 位置形成氢键,并且被证明不能支持 Au1a 结构域二聚化。在蓝光下,Gln293 侧链反而“摆动”远离发色团,并且在现有 LOV 结构域结构中未观察到。综上所述,Gln293 的多种侧链构象和 5dFMN 的功能分析为 LOV 结构域激活的结构要求提供了新的见解。