Hartley Andrew M, Worthy Harley L, Reddington Samuel C, Rizkallah Pierre J, Jones D Dafydd
School of Biosciences , Cardiff University , Cardiff , UK . Email:
School of Medicine , Cardiff University , Cardiff , UK.
Chem Sci. 2016 Oct 1;7(10):6484-6491. doi: 10.1039/c6sc00944a. Epub 2016 Jun 29.
Through the genetic incorporation of a single phenyl azide group into superfolder GFP (sfGFP) at residue 148 we provide a molecular description of how this highly versatile chemical handle can be used to positively switch protein function and either photochemistry or bioconjugation. Replacement of H148 with -azido-l-phenylalanine (azF) blue shifts the major excitation peak ∼90 nm by disrupting the H-bond and proton transfer network that defines the chromophore charged state. Bioorthogonal click modification with a simple dibenzylcyclooctyne or UV irradiation shifts the neutral-anionic chromophore equilibrium, switching fluorescence to the optimal ∼490 nm excitation. Click modification also improved quantum yield over both the unmodified and original protein. Crystal structures of both the click modified and photochemically converted forms show that functional switching is due to local conformational changes that optimise the interaction networks surrounding the chromophore. Crystal structure and mass spectrometry studies of the irradiated protein suggest that the phenyl azide converts to a dehydroazepine and/or an azepinone. Thus, protein embedded phenyl azides can be used beyond simple photocrosslinkers and passive conjugation handles, and mimic many natural post-translational modifications: modulation though changes in interaction networks.
通过在148位残基处将单个苯基叠氮基团基因整合到超折叠绿色荧光蛋白(sfGFP)中,我们给出了关于这种高度通用的化学手柄如何用于正向切换蛋白质功能以及光化学或生物共轭的分子描述。用叠氮基-L-苯丙氨酸(azF)取代H148会破坏定义发色团电荷状态的氢键和质子转移网络,使主要激发峰蓝移约90纳米。用简单的二苄基环辛炔进行生物正交点击修饰或紫外线照射会改变中性-阴离子发色团平衡,将荧光切换到最佳的约490纳米激发。点击修饰还提高了修饰后的蛋白质和原始蛋白质的量子产率。点击修饰形式和光化学转化形式的晶体结构表明,功能切换是由于局部构象变化,这种变化优化了发色团周围的相互作用网络。对辐照后蛋白质的晶体结构和质谱研究表明,苯基叠氮转化为脱氢氮杂卓和/或氮杂卓酮。因此,嵌入蛋白质的苯基叠氮不仅可以用作简单的光交联剂和被动共轭手柄,还可以模拟许多天然的翻译后修饰:通过相互作用网络的变化进行调节。