Frank Müh, Michael R. Jones, Wolfgang Lubitz
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引用次数: 9
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Abstract
The freeze-trapped bacteriopheophytin a radical anion Φ has been investigated by 1 H-ENDOR/Special TRIPLE resonance spectroscopy in photosynthetic reaction centers of Rhodobacter sphaeroides , in which the Tyr at position M210 had been replaced by either Phe, Leu, His or Trp.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 Φ, denoted I and I, can be stabilized below 200 K. The state I is metastable and relaxes to I as the temperature is raised from 135 K to 180 K. The difference in the electronic structure of Φ between the two states is interpreted in terms of a conformational change of ΦA 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 Φ state is obtained that is distinct from I and I, 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 31 -keto oxygen of ΦA that impedes the reorientation of the acetyl group. Only one Φ state is observed in the YL(M210) reaction center, which is similar to the metastable state I 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. © 1999 John Wiley & Sons, Inc. Biospectroscopy 5: 35–46, 1999
球形红杆菌反应中心中光活性菌藻素乙酰基的重定向:一项ENDOR/三重共振研究
利用h - endor /Special三重共振光谱技术研究了球形红杆菌(Rhodobacter sphaeroides)光合反应中心冷冻捕获的叶绿素自由基Φ,其中M210位置的Tyr被苯丙氨酸(Phe)、亮氨酸(Leu)、His或色氨酸取代。在野生型反应中心和突变体YF(M210)和YW(M210)两种不同状态Φ,分别记为I和I,均可稳定在200 K以下。态I为亚稳态,当温度从135k升高到180k时松弛为态I。两种状态之间Φ电子结构的差异可以用ΦA在冷冻捕获后的构象变化来解释,这涉及到3-乙酰基相对于菌生菌素的大环的重新定向。这种解释得到了RHF-INDO/SP计算结果的支持。在YH(M210)反应中心中,只得到一个与I和I不同的Φ态,观察到的电子结构表明3-乙酰基几乎是面内取向的。这与他的M210和ΦA的31-酮氧之间形成氢键的提议是一致的,这阻碍了乙酰基的重定向。YL(M210)反应中心只观察到一个Φ状态,类似于野生型配合物中的亚稳态I。这一结果可以解释为3-乙酰基重定向的空间位阻是由Leu在M210位置的侧链施加的。讨论了这些发现对细菌反应中心电子转移机制的可能意义。©1999 John Wiley &儿子,Inc。生物光谱学学报(英文版),1999
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