List Nanna H, Pimenta Frederico M, Holmegaard Lotte, Jensen Rasmus L, Etzerodt Michael, Schwabe Tobias, Kongsted Jacob, Ogilby Peter R, Christiansen Ove
Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, Odense M, 5230, Denmark.
Phys Chem Chem Phys. 2014 Jun 7;16(21):9950-9. doi: 10.1039/c3cp54470b. Epub 2014 Jan 22.
Linear and nonlinear spectroscopic parameters of flavin mononucleotide, FMN, have been examined both experimentally and computationally under conditions in which FMN is (1) solvated in a buffered aqueous solution, and (2) encased in a protein that is likewise solvated in a buffered aqueous solution. The latter was achieved using "miniSOG" which is an FMN-containing protein engineered from Arabidopsis thaliana phototropin 2. Although it is reasonable to expect that the encasing protein could have an appreciable effect, certainly on the nonlinear two-photon absorption cross section, we find that replacing the dynamic aqueous environment with the more static protein environment does little to influence the spectroscopic properties of FMN. The experimental and computational studies are consistent in this regard, and this agreement indicates that comparatively high-level computational methods can indeed be used with success on large chromophores with a complicated local environment. The results of the present study facilitate the much-needed development of well-characterized and readily-controlled chromophores suitable for use as intracellular sensitizers and fluorophores.
黄素单核苷酸(FMN)的线性和非线性光谱参数已在以下两种条件下通过实验和计算进行了研究:(1)FMN溶解于缓冲水溶液中;(2)FMN包裹于同样溶解于缓冲水溶液中的蛋白质中。后者通过使用“miniSOG”实现,“miniSOG”是一种从拟南芥向光素2工程改造而来的含FMN蛋白质。尽管可以合理预期包裹蛋白质可能会产生显著影响,尤其是对非线性双光子吸收截面,但我们发现,用更静态的蛋白质环境取代动态的水环境对FMN的光谱性质影响不大。在这方面,实验和计算研究结果一致,这种一致性表明,相对高级的计算方法确实可以成功应用于具有复杂局部环境的大型发色团。本研究结果有助于开发急需的、特性良好且易于控制的发色团,适用于作为细胞内敏化剂和荧光团。