School of Chemistry, University of East Anglia, Norwich, UK NR1 2QN.
Chem Soc Rev. 2009 Oct;38(10):2922-34. doi: 10.1039/b820168b. Epub 2009 Aug 25.
The green fluorescent protein is a key technology in bioimaging. In this critical review, we consider how its various applications can be tailored from knowledge of the excited state chemistry. The photophysics of the basic chromophore in solution are described in detail, and the dominant radiationless decay mechanism is characterised. The quite different photophysics of wild type GFP are described next. The unique excited state proton transfer reaction observed can be used to model proton transfer processes in proteins. Examples where the proton transfer is blocked, or redirected to occur over a low short barrier H-bond are discussed. Finally the photophysics underlying the new generation of photochemically active fluorescent proteins are discussed (155 references).
绿色荧光蛋白是生物成像的关键技术。在这篇重要评论中,我们考虑了如何根据激发态化学知识来调整其各种应用。详细描述了基本生色团在溶液中的光物理性质,并对主要的无辐射衰减机制进行了表征。接下来描述了野生型 GFP 的完全不同的光物理性质。可以使用观察到的独特的激发态质子转移反应来模拟蛋白质中的质子转移过程。讨论了质子转移受阻或被重定向到低短势垒氢键上的情况。最后,讨论了新一代光化学活性荧光蛋白的光物理基础(引用 155 篇文献)。