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Reorientation of the acetyl group of the photoactive bacteriopheophytin in reaction centers of Rhodobacter sphaeroides: An ENDOR TRIPLE resonance study

机译:球形球形红细菌反应中心中光敏噬菌体素乙酰基的重新定向:ENDOR TRIPLE共振研究

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The freeze-trapped bacteriopheophytin a radical anion Phi(A)(.-) has been investigated by H-1-ENDOR/Special TRIPLE resonance spectroscopy in photosynthetic reaction centers of Rhodabacter sphaeroides, in which the Tyr at position M210 had been replaced by either Phe, Leu, His or Trp. In the wild type reaction center and the mutants YF(M210) and YW(M210) two distinct states of Phi(A)(.-), denoted I-1(.-) and I-2(.-), can be stabilized below 200 K. The state I-1(.-) is metastable and relaxes to I-2(.-) as the temperature is raised from 135 K to 180 K. The difference in the electronic structure of Phi(A)(.-) between the two states is interpreted in terms of a conformational change of Phi(A) after freeze-trapping, involving a reorientation of the 3-acetyl group with respect to the macrocycle of the bacteriopheophytin. This interpretation is supported by the results of RHF-INDO/SP calculations. In the YH(M210) reaction center only one Phi(A)(.-) state is obtained that is distinct from I-1(.-) and I-2(.-), and the observed electronic structure indicates an almost in-plane orientation of the 3-acetyl group. This is consistent with the proposal that a hydrogen bond is formed between His M210 and the 3(1)-keto oxygen of Phi(A) that impedes the reorientation of the acetyl group. Only one Phi(A)(.-) state is observed in the YL(M210) reaction center, which is similar to the metastable state I-1(.-) in the wild type complex. This result is interpreted in terms of a steric hindrance of the reorientation of the 3-acetyl group that is exerted by the side chain of Leu at position M210. Possible implications of these findings for the mechanism of electron transfer in bacterial reaction centers are discussed. (C) 1999 John Wiley & Sons, Inc. [References: 48]
机译:已通过H-1-ENDOR / Special TRIPLE共振光谱法在球形红球菌的光合反应中心研究了冷冻捕获的噬菌体素自由基阴离子Phi(A)(.-),其中M210位的Tyr被任一Phe,Leu,他的或Trp。在野生型反应中心和突变体YF(M210)和YW(M210)中,Phi(A)(.-)的两个不同状态可以表示为I-1(.-)和I-2(.-)。稳定在200 K以下。状态I-1(.-)是亚稳态的,并且随着温度从135 K升高到180 K而松弛到I-2(.-)。Phi(A)(冷冻捕获后,Phi(A)的构象变化解释了这两个状态之间的.-),涉及3-乙酰基相对于噬菌体蛋白大环的重新定向。 RHF-INDO / SP计算结果支持这种解释。在YH(M210)反应中心,仅获得一个不同于I-1(.-)和I-2(.-)的Phi(A)(.-)状态,并且观察到的电子结构表明几乎处于3-乙酰基的平面取向。这与在His M210和Phi(A)的3(1)-酮氧之间形成氢键的提议相一致,该氢键阻碍乙酰基的重新取向。在YL(M210)反应中心仅观察到一个Phi(A)(.-)状态,这与野生型复合物中的亚稳态I-1(.-)类似。该结果根据在位置M210的Leu的侧链施加的3-乙酰基的重新定位的空间位阻来解释。讨论了这些发现对细菌反应中心电子转移机制的可能含义。 (C)1999 John Wiley&Sons,Inc. [参考:48]

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