Maddalo Scott L, Zimmer Marc
Chemistry Department, Connecticut College, New London, CT, USA.
Photochem Photobiol. 2006 Mar-Apr;82(2):367-72. doi: 10.1562/2005-04-11-RA-485.
In the ground state of the highly conjugated green fluorescent protein (GFP), the chromophore should be planar. However, numerous crystal structures of GFP and GFP-like proteins have been reported with slightly twisted chromophores. We have previously shown that the protein cavity surrounding the chromophore in wild-type GFP is not complementary with a planar chromophore. This study shows that the crystal structure of wild-type GFP is not an anomaly: most of the GFP and GFP-like proteins in the protein databank have a protein matrix that is not complementary with a planar chromophore. When the pi-conjugation across the ethylenic bridge of the chromophore is removed the protein matrix will significantly twist the freely rotating chromophore from the relatively planar structures found in the crystal structures. The possible consequences of this nonplanar deformation on the photophysics of GFP are discussed. A volume analysis of the cis-trans-isomerization of HBDI, a GFP chromophore model compound, reveals that its hula-twist motion is volume conserving. This means that, if the GFP chromophore or GFP chromophore model compounds undergo a cis-trans-isomerization in a volume-constricting medium, such as a protein matrix or viscous liquid, it will probably isomerize by means of a HT-type motion.
在高度共轭的绿色荧光蛋白(GFP)的基态中,发色团应为平面结构。然而,已有众多关于GFP及类GFP蛋白的晶体结构报道,其发色团存在轻微扭曲。我们之前已经表明,野生型GFP中围绕发色团的蛋白腔与平面发色团并不互补。本研究表明,野生型GFP的晶体结构并非异常情况:蛋白质数据库中的大多数GFP及类GFP蛋白都具有与平面发色团不互补的蛋白质基质。当发色团乙烯桥的π共轭被消除时,蛋白质基质会使自由旋转的发色团从晶体结构中相对平面的结构显著扭曲。本文讨论了这种非平面变形对GFP光物理性质可能产生的影响。对GFP发色团模型化合物HBDI的顺反异构化进行的体积分析表明,其呼啦圈扭转运动是体积守恒的。这意味着,如果GFP发色团或GFP发色团模型化合物在诸如蛋白质基质或粘性液体等体积受限的介质中发生顺反异构化,它很可能通过HT型运动进行异构化。