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D1多肽的天冬氨酸170是否连接光系统II中的锰簇?一项电子顺磁共振和电子自旋回波包络调制研究。

Does aspartate 170 of the D1 polypeptide ligate the manganese cluster in photosystem II? An EPR and ESEEM Study.

作者信息

Debus Richard J, Aznar Constantino, Campbell Kristy A, Gregor Wolfgang, Diner Bruce A, Britt R David

机构信息

Department of Biochemistry, University of California, Riverside, California 92521-0129, USA.

出版信息

Biochemistry. 2003 Sep 16;42(36):10600-8. doi: 10.1021/bi034859f.

Abstract

Aspartate 170 of the D1 polypeptide provides part of the high-affinity binding site for the first Mn(II) ion that is photooxidized during the light-driven assembly of the (Mn)(4) cluster in photosystem II [Campbell, K. A., Force, D. A., Nixon, P. J., Dole, F., Diner, B. A., and Britt, R. D. (2000) J. Am. Chem. Soc. 122, 3754-3761]. However, despite a wealth of data on D1-Asp170 mutants accumulated over the past decade, there is no consensus about whether this residue ligates the assembled (Mn)(4) cluster. To address this issue, we have conducted an EPR and ESEEM (electron spin-echo envelope modulation) study of D1-D170H PSII particles purified from the cyanobacterium Synechocystis sp. PCC 6803. The line shapes of the S(1) and S(2) state multiline EPR signals of D1-D170H PSII particles are unchanged from those of wild-type PSII particles, and the signal amplitudes correlate approximately with the lower O(2) evolving activity of the mutant PSII particles (40-60% compared to that of the wild type). These data provide further evidence that the assembled (Mn)(4) clusters in D1-D170H cells function normally, even though the assembly of the (Mn)(4) cluster is inefficient in this mutant. In the two-pulse frequency domain ESEEM spectrum of the 9.2 GHz S(2) state multiline EPR signal of D1-D170H PSII particles, the histidyl nitrogen modulation observed at 4-5 MHz is unchanged from that of wild-type PSII particles and no significant new modulation is observed. Three scenarios are presented to explain this result. (1) D1-Asp170 ligates the assembled (Mn)(4) cluster, but the hyperfine couplings to the ligating histidyl nitrogen of D1-His170 are too large or anisotropic to be detected by ESEEM analyses conducted at 9.2 GHz. (2) D1-Asp170 ligates the assembled (Mn)(4) cluster, but D1-His170 does not. (3) D1-Asp170 does not ligate the assembled (Mn)(4) cluster.

摘要

D1多肽的天冬氨酸170为第一个锰离子(II)提供了部分高亲和力结合位点,该锰离子(II)在光系统II中(Mn)4簇的光驱动组装过程中被光氧化[坎贝尔,K.A.,福斯,D.A.,尼克松,P.J.,多尔,F.,迪纳,B.A.,和布里特,R.D.(2000年)《美国化学会志》122,3754 - 3761]。然而,尽管在过去十年中积累了大量关于D1 - Asp170突变体的数据,但对于该残基是否连接组装好的(Mn)4簇尚无共识。为了解决这个问题,我们对从蓝藻集胞藻PCC 6803中纯化的D1 - D170H光系统II颗粒进行了电子顺磁共振(EPR)和电子自旋回波包络调制(ESEEM)研究。D1 - D170H光系统II颗粒的S1和S2态多线EPR信号的线形与野生型光系统II颗粒的线形没有变化,并且信号幅度与突变体光系统II颗粒较低的氧气释放活性大致相关(与野生型相比为40 - 60%)。这些数据进一步证明,D1 - D170H细胞中组装好的(Mn)4簇功能正常,尽管该突变体中(Mn)4簇的组装效率较低。在D1 - D170H光系统II颗粒9.2 GHz S2态多线EPR信号的双脉冲频域ESEEM谱中,在4 - 5 MHz观察到的组氨酸氮调制与野生型光系统II颗粒的没有变化,并且没有观察到明显的新调制。提出了三种情况来解释这个结果。(1)D1 - Asp170连接组装好的(Mn)4簇,但与D1 - His170的连接组氨酸氮的超精细耦合太大或各向异性太强,以至于在9.2 GHz进行的ESEEM分析无法检测到。(2)D1 - Asp170连接组装好的(Mn)4簇,但D1 - His170不连接。(3)D1 - Asp170不连接组装好的(Mn)4簇。

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