Department of Physics, B-019, University of California, San Diego, 92093, La Jolla, CA, USA.
Photosynth Res. 1991 Feb;27(2):109-19. doi: 10.1007/BF00033250.
Electron transfer rates were measured in RCs from three herbicide-resistant mutants with known amino acid changes to elucidate the structural requirements for last electron transfer. The three herbicide resistant mutants were IM(L229) (Ile-L229↦ Met), SP(L223) (Ser-L223↦ Pro) and YG(L222) (Tyr-L222↦ Gly). The electron transfer rate D(+)QA (-)QB↦D(+)QAQB (k AB) is slowed ∼3 fold in the IM(L229) and YG(L222) RCs (pH 8). The stabilization of D(+)QAQB (-) with respect to D(+)QAQB (-) (pH 8) was found to be eliminated in the IM(L229) mutant RCs (ΔG(0) ∼ 0 meV), was partially reduced in the SP(L223) mutant RCs (ΔG(0)=-30 meV), and was unaltered in the YG(L222) mutant RCs (ΔG(0)=-60 meV), compared to that observed in the native RCs (ΔG(0)=-60 meV). The pH dependences of the charge recombination rate D(+)QAQB (-)↦DQAQB (k BD) and the electron transfer from QA (-) (k QA (-)↦QA) suggest that the mutations do not affect the protonation state of Glu-L212 nor the electrostatic interactions of QB and QB (-) with Glu-L212. The binding affinities of UQ10 for the QB site were found in order of decreasing values to be native ≥IM(L229) > YG(L222)≥ SP(L223). The altered properties of the mutant RCs are used to deduce possible structural changes caused by the mutations and are dicscussed in terms of photosynthetic efficiency of the herbicide resistant strains.
测定了三种具有已知氨基酸变化的抗除草剂突变体的 RC 中的电子转移速率,以阐明最后电子转移的结构要求。这三种抗除草剂突变体是 IM(L229)(Ile-L229↦Met)、SP(L223)(Ser-L223↦Pro)和 YG(L222)(Tyr-L222↦Gly)。电子转移速率 D(+)QA(-)QB↦D(+)QAQB(kAB)在 IM(L229)和 YG(L222)RCs(pH 8)中减缓了约 3 倍。在 IM(L229)突变体 RC 中发现 D(+)QAQB(-)相对于 D(+)QAQB(-)的稳定性(pH 8)被消除(ΔG(0)≈0 meV),在 SP(L223)突变体 RC 中部分降低(ΔG(0)=-30 meV),在 YG(L222)突变体 RC 中未改变(ΔG(0)=-60 meV),与天然 RC 中观察到的相比(ΔG(0)=-60 meV)。D(+)QAQB(-)↦DQAQB(kBD)和 QA(-)(kQA(-)↦QA)的电荷复合速率的 pH 依赖性表明突变不影响 Glu-L212 的质子化状态,也不影响 QB 和 QB(-)与 Glu-L212 的静电相互作用。发现 UQ10 与 QB 位的结合亲和力按降低的顺序为天然体≥IM(L229)>YG(L222)≥SP(L223)。突变体 RC 的改变性质用于推断突变引起的可能结构变化,并根据除草剂抗性菌株的光合作用效率进行讨论。