光合反应中心
红杆菌属
电子转移
细菌叶绿素
化学
天冬氨酸
发色团
光化学
残留物(化学)
电子传输链
球形红杆菌
红螺旋体
光合作用
突变体
立体化学
氨基酸
生物化学
基因
作者
Barbara A. Heller,Dewey Holten,Christine Kirmaier
出处
期刊:Science
[American Association for the Advancement of Science]
日期:1995-08-18
卷期号:269 (5226): 940-945
被引量:185
标识
DOI:10.1126/science.7638616
摘要
An aspartic acid residue has been introduced near ring V of the L-side accessory bacteriochlorophyll (BChl L ) of the photosynthetic reaction center in a Rhodobacter capsulatus mutant in which a His also replaces Leu 212 on the M-polypeptide. The initial stage of charge separation in the G(M201)D/L(M212)H double mutant yields ∼70 percent electron transfer to the L-side cofactors, ∼15 percent rapid deactivation to the ground state, and ∼15 percent electron transfer to the so-called inactive M-side bacteriopheophytin (BPh M ). It is suggested here that the Asp introduced at M201 modulates the reduction potential of BChl L , thereby changing the energetics of charge separation. The results demonstrate that an individual amino acid residue can, through its influence on the free energies of the charge-separated states, effectively dictate the balance between the forward electron transfer reactions on the L-side of the RC, the charge-recombination processes, and electron transfer to the M-side chromophores.
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