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对光系统I中电子从F(X)转移至F(A)进而到F(B)的序列进行动力学评估:F(X)与F(A)之间平衡常数的值。

A kinetic assessment of the sequence of electron transfer from F(X) to F(A) and further to F(B) in photosystem I: the value of the equilibrium constant between F(X) and F(A).

作者信息

Shinkarev V P, Vassiliev I R, Golbeck J H

机构信息

Department of Plant Biology, University of Illinois, Urbana, Illinois 61801, USA.

出版信息

Biophys J. 2000 Jan;78(1):363-72. doi: 10.1016/S0006-3495(00)76599-4.

Abstract

The x-ray structure analysis of photosystem I (PS I) crystals at 4-A resolution (Schubert et al., 1997, J. Mol. Biol. 272:741-769) has revealed the distances between the three iron-sulfur clusters, labeled F(X), F(1), and F(2), which function on the acceptor side of PS I. There is a general consensus concerning the assignment of the F(X) cluster, which is bound to the PsaA and PsaB polypeptides that constitute the PS I core heterodimer. However, the correspondence between the acceptors labeled F(1) and F(2) on the electron density map and the F(A) and F(B) clusters defined by electron paramagnetic resonance (EPR) spectroscopy remains controversial. Two recent studies (Diaz-Quintana et al., 1998, Biochemistry. 37:3429-3439;, Vassiliev et al., 1998, Biophys. J. 74:2029-2035) provided evidence that F(A) is the cluster proximal to F(X), and F(B) is the cluster that donates electrons to ferredoxin. In this work, we provide a kinetic argument to support this assignment by estimating the rates of electron transfer between the iron-sulfur clusters F(X), F(A), and F(B). The experimentally determined kinetics of P700(+) dark relaxation in PS I complexes (both F(A) and F(B) are present), HgCl(2)-treated PS I complexes (devoid of F(B)), and P700-F(X) cores (devoid of both F(A) and F(B)) from Synechococcus sp. PCC 6301 are compared with the expected dependencies on the rate of electron transfer, based on the x-ray distances between the cofactors. The analysis, which takes into consideration the asymmetrical position of iron-sulfur clusters F(1) and F(2) relative to F(X), supports the F(X) --> F(A) --> F(B) --> Fd sequence of electron transfer on the acceptor side of PS I. Based on this sequence of electron transfer and on the observed kinetics of P700(+) reduction and F(X)(-) oxidation, we estimate the equilibrium constant of electron transfer between F(X) and F(A) at room temperature to be approximately 47. The value of this equilibrium constant is discussed in the context of the midpoint potentials of F(X) and F(A), as determined by low-temperature EPR spectroscopy.

摘要

对光系统I(PS I)晶体进行的4埃分辨率的X射线结构分析(舒伯特等人,1997年,《分子生物学杂志》272:741 - 769)揭示了在PS I受体侧起作用的三个铁硫簇(标记为F(X)、F(1)和F(2))之间的距离。关于与构成PS I核心异二聚体的PsaA和PsaB多肽结合的F(X)簇的归属,已达成普遍共识。然而,电子密度图上标记为F(1)和F(2)的受体与通过电子顺磁共振(EPR)光谱定义的F(A)和F(B)簇之间的对应关系仍存在争议。最近的两项研究(迪亚兹 - 金塔纳等人,1998年,《生物化学》37:3429 - 3439;瓦西列夫等人,1998年,《生物物理杂志》74:2029 - 2035)提供了证据,表明F(A)是靠近F(X)的簇,而F(B)是向铁氧化还原蛋白提供电子的簇。在这项工作中,我们通过估计铁硫簇F(X)、F(A)和F(B)之间的电子转移速率,提供了一个动力学论据来支持这一归属。将实验测定的来自聚球藻属PCC 6301的PS I复合物(同时存在F(A)和F(B))、HgCl₂处理的PS I复合物(不含F(B))以及P700 - F(X)核心(不含F(A)和F(B))中P700(+)暗弛豫的动力学,与基于辅因子之间的X射线距离对电子转移速率的预期依赖性进行了比较。该分析考虑了铁硫簇F(1)和F(2)相对于F(X)的不对称位置,支持了PS I受体侧F(X)→F(A)→F(B)→Fd的电子转移序列。基于这个电子转移序列以及观察到的P700(+)还原和F(X)(-)氧化的动力学,我们估计室温下F(X)和F(A)之间电子转移的平衡常数约为47。根据低温EPR光谱测定的F(X)和F(A)的中点电位,讨论了这个平衡常数的值。

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