Hartzler Daniel A, Niedzwiedzki Dariusz M, Bryant Donald A, Blankenship Robert E, Pushkar Yulia, Savikhin Sergei
Department of Physics, Purdue University , 525 Northwestern Avenue, West Lafayette, Indiana 47907, United States.
J Phys Chem B. 2014 Jul 3;118(26):7221-32. doi: 10.1021/jp500539w. Epub 2014 Jun 20.
(Bacterio)Chlorophyll ((B)Chl) molecules play a major role in photosynthetic light-harvesting proteins, and the knowledge of their triplet state energies is essential to understand the mechanisms of photodamage and photoprotection, as the triplet excitation energy of (B)Chl molecules can readily generate highly reactive singlet oxygen. The triplet state energies of 10 natural chlorophyll (Chl a, b, c2, d) and bacteriochlorophyll (BChl a, b, c, d, e, g) molecules and one bacteriopheophytin (BPheo g) have been directly determined via their phosphorescence spectra. Phosphorescence of four molecules (Chl c2, BChl e and g, BPheo g) was characterized for the first time. Additionally, the relative phosphorescence to fluorescence quantum yield for each molecule was determined. The measurements were performed at 77K using solvents providing a six-coordinate environment of the Mg(2+) ion, which allows direct comparison of these (B)Chls. Density functional calculations of the triplet state energies show good correlation with the experimentally determined energies. The correlation determined computationally was used to predict the triplet energies of three additional (B)Chl molecules: Chl c1, Chl f, and BChl f.
(细菌)叶绿素((B)Chl)分子在光合捕光蛋白中起主要作用,了解其三重态能量对于理解光损伤和光保护机制至关重要,因为(B)Chl分子的三重激发能可轻易产生高活性单线态氧。通过磷光光谱直接测定了10种天然叶绿素(叶绿素a、b、c2、d)和细菌叶绿素(细菌叶绿素a、b、c、d、e、g)分子以及一种细菌脱镁叶绿素(BPheo g)的三重态能量。首次对四种分子(叶绿素c2、细菌叶绿素e和g、BPheo g)的磷光进行了表征。此外,还测定了每个分子的相对磷光与荧光量子产率。测量在77K下使用能提供Mg(2+)离子六配位环境的溶剂进行,这使得这些(B)Chl能够直接比较。三重态能量的密度泛函计算结果与实验测定的能量显示出良好的相关性。通过计算确定的相关性被用于预测另外三种(B)Chl分子:叶绿素c1、叶绿素f和细菌叶绿素f的三重态能量。