Norris J R, Budil D E, Gast P, Chang C H, el-Kabbani O, Schiffer M
Chemistry Division, Argonne National Laboratory, IL 60439.
Proc Natl Acad Sci U S A. 1989 Jun;86(12):4335-9. doi: 10.1073/pnas.86.12.4335.
The orientation of the principal axes of the primary electron donor triplet state measured in single crystals of photosynthetic reaction centers is compared to the x-ray structures of the bacteria Rhodobacter (Rb.) sphaeroides R-26 and Rhodopseudomonas (Rps.) viridis. The primary donor of Rps. viridis is significantly different from that of Rb. sphaeroides. The measured directions of the axes indicate that triplet excitation is almost completely localized on the L-subunit half of the dimer in Rps. viridis but is more symmetrically distributed (approximately 63% on the L half of the special pair and approximately 37% on the M half) on the dimeric donor in Rb. sphaeroides R-26. The large reduction of the zero field splitting parameters relative to monomeric bacteriochlorophyll triplet in vitro suggests significant participation of asymmetrical charge transfer electronic configurations in the special pair triplet state of both organisms (approximately 23% in Rps. viridis and approximately 13% in Rb. sphaeroides).
在光合反应中心单晶中测得的初级电子供体三重态主轴方向,与球形红杆菌(Rb.)sphaeroides R - 26和绿假单胞菌(Rps.)viridis的X射线结构进行了比较。绿假单胞菌的初级供体与球形红杆菌的有显著差异。轴的测量方向表明,在绿假单胞菌中三重态激发几乎完全定域在二聚体的L亚基一半上,但在球形红杆菌R - 26的二聚体供体上分布更对称(约63%在特殊对的L半部分,约37%在M半部分)。相对于体外单体细菌叶绿素三重态,零场分裂参数大幅降低,这表明不对称电荷转移电子构型在两种生物体的特殊对三重态中都有显著参与(绿假单胞菌中约23%,球形红杆菌中约13%)。