International Laser Center of Moscow State University, Russian Academy of Science, 142092, Troitsk, Moscow Region, Russia.
Photosynth Res. 1994 Oct;42(1):9-15. doi: 10.1007/BF00019053.
Forward and back energy transfer between antenna and RC in the photosynthetic apparatus of purple bacteria was studied taking into account the exciton states of the antenna. The exciton states were calculated for core antenna configuration in the form of a circular aggregate of N identical BChl molecules with the CN-symmetry. The influence of pigment inhomogeneity on the proposed exciton description of the antenna and its interaction with RC was investigated. The ratio between the rate constants of forward and back energy transfer between the exciton levels of the antenna and RC was obtained as a function of the temperature, the number of antenna BChls and the antenna exciton level position with respect to BChl special pair level of RC. A versatile analytical expression for this ratio which is independent of the BChl special pair level position and its dipole orientation was derived. The proposed model results in an irreversible excitation trapping by RC even at room temperature.
考虑天线的激子态,研究了紫色细菌光合作用装置中天线和 RC 之间的向前和向后能量转移。对于具有 CN 对称性的 N 个相同 BChl 分子的圆形聚集体形式的核心天线构型,计算了激子态。研究了色素不均匀性对所提出的天线激子描述及其与 RC 相互作用的影响。作为温度、天线 BChls 数量以及天线激子水平相对于 RC BChl 特殊对水平位置的函数,获得了天线和 RC 之间激子水平之间向前和向后能量转移的速率常数之比。推导出了一个与 BChl 特殊对水平位置及其偶极取向无关的这个比例的通用解析表达式。即使在室温下,所提出的模型也会导致 RC 不可逆的激发捕获。