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绿脓杆菌(绿假单胞菌)分离反应中心的初级光化学过程

Primary photochemical processes in isolated reaction centers of Rhodopseudomonas viridis.

作者信息

Holten D, Windsor M W, Parson W W, Thornber J P

出版信息

Biochim Biophys Acta. 1978 Jan 11;501(1):112-26. doi: 10.1016/0005-2728(78)90100-7.

Abstract

Picosecond and nanosecond spectroscopic techniques have been used to study the primary electron transfer processes in reaction centers isolated from the photosynthetic bacterium Rhodopseudomonas viridis. Following flash excitation, the first excited singlet state (P*) of the bacteriochlorophyll complex (P) transfers an electron to an intermediate acceptor (I) in less than 20 ps. The radical pair state P+I-) subsequently transfers an electron to another acceptor (X) in about 230 ps. There is an additional step of unknown significance exhibiting 35 ps kinetics. P+ subsequently extracts an electron from a cytochrome, with a time constant of about 270 ns. At low redox potential (X reduced before the flash), the state P+I- (or PF) lives approx. 15 ns. It decays, in part, into a longer lived state (PR), which appears to be a triplet state. State PR decays with an exponential time of approx. 55 microseconds. After continuous illumination at low redox potential (I and X both reduced), excitation with an 8-ps flash produces absorption changes reflecting the formation of the first excited singlet state, P*. Most of P* then decays with a time constant of 20 ps. The spectra of the absorbance changes associated with the conversion of P to P* or P+ support the view that P involves two or more interacting bacteriochlorophylls. The absorbance changes associated with the reduction of I to I- suggest that I is a bacteriopheophytin interacting strongly with one or more bacteriochlorophylls in the reaction center.

摘要

皮秒和纳秒光谱技术已被用于研究从光合细菌绿脓杆菌中分离出的反应中心的初级电子转移过程。闪光激发后,细菌叶绿素复合物(P)的第一激发单重态(P*)在不到20皮秒的时间内将一个电子转移到中间受体(I)。自由基对态(P+I-)随后在约230皮秒的时间内将一个电子转移到另一个受体(X)。还有一个具有未知意义的额外步骤,表现出35皮秒的动力学。P+随后从细胞色素中提取一个电子,时间常数约为270纳秒。在低氧化还原电位下(闪光前X被还原),态P+I-(或PF)的寿命约为15纳秒。它部分衰变为寿命更长的态(PR),PR似乎是一个三重态。态PR以约55微秒的指数时间衰减。在低氧化还原电位下持续光照后(I和X都被还原),用8皮秒的闪光激发会产生反映第一激发单重态P形成的吸收变化。然后,大多数P以20皮秒的时间常数衰减。与P转化为P*或P+相关的吸光度变化光谱支持了P涉及两个或更多相互作用的细菌叶绿素的观点。与I还原为I-相关的吸光度变化表明I是一种细菌脱镁叶绿素,它与反应中心中的一个或多个细菌叶绿素强烈相互作用。

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