College of Chemistry, Beijing Normal University, Beijing 100875, China.
J Am Chem Soc. 2010 Jan 20;132(2):706-12. doi: 10.1021/ja908051h.
This is the first report on a multiconfigurational reference second-order perturbation theory-molecular mechanics study of the color modulation of the observed bioluminescence of the oxyluciferin-luciferase complex of the Japanese genji-botaru firefly using structures according to recent X-ray data. Our theoretical results do not support the experimentally deduced conclusion that the color modulation of the emitted light primarily depends on the size of the compact luciferase protein cavity embedding the excited oxyluciferin molecule. Rather, we find, in agreement with recent experimental observations, that the wavelength of the emitted light depends on the polarity of the microenvironment at the phenol/phenolate terminal of the benzothiazole fragment in oxyluciferin.
这是第一篇关于多组态参考二级微扰理论-分子力学研究的报告,该研究使用根据最近的 X 射线数据确定的结构,对日本萤火虫 genji-botaru 的荧光素-荧光酶复合物的观察到的生物发光的颜色调制进行了研究。我们的理论结果不支持实验推断的结论,即发射光的颜色调制主要取决于嵌入激发态荧光素分子的紧凑荧光酶蛋白腔的大小。相反,我们发现,与最近的实验观察结果一致,发射光的波长取决于苯并噻唑片段中酚/酚盐末端的微环境的极性。