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光系统II锰簇:通过量子化学和静电能联合计算探索S1态下W2、O5、O4和His337的质子化作用

PSII manganese cluster: protonation of W2, O5, O4 and His337 in the S1 state explored by combined quantum chemical and electrostatic energy computations.

作者信息

Robertazzi Arturo, Galstyan Artur, Knapp Ernst Walter

机构信息

Department of Biology, Chemistry and Pharmacy, Institute of Chemistry and Biochemistry, Freie Universität Berlin, Fabeckstr. 36a, D-14195 Berlin, Germany.

Department of Biology, Chemistry and Pharmacy, Institute of Chemistry and Biochemistry, Freie Universität Berlin, Fabeckstr. 36a, D-14195 Berlin, Germany.

出版信息

Biochim Biophys Acta. 2014 Aug;1837(8):1316-21. doi: 10.1016/j.bbabio.2014.03.018. Epub 2014 Apr 12.

Abstract

Photosystem II (PSII) is a membrane-bound protein complex that oxidizes water to produce energized protons, which are used to built up a proton gradient across the thylakoidal membrane in the leafs of plants. This light-driven reaction is catalyzed by withdrawing electrons from the Mn₄CaO₅-cluster (Mn-cluster) in four discrete oxidation steps [S₁-(S₄/S₀)] characterized in the Kok-cycle. In order to understand in detail the proton release events and the subsequent translocation of such energized protons, the protonation pattern of the Mn-cluster need to be elucidated. The new high-resolution PSII crystal structure from Umena, Kawakami, Shen, and Kamiya is an excellent basis to make progress in solving this problem. Following our previous work on oxidation and protonation states of the Mn-cluster, in this work, quantum chemical/electrostatic calculations were performed in order to estimate the pKa of different protons of relevant groups and atoms of the Mn-cluster such as W2, O4, O5 and His337. In broad agreement with previous experimental and theoretical work, our data suggest that W2 and His337 are likely to be in hydroxyl and neutral form, respectively, O5 and O4 to be unprotonated. This article is part of a Special Issue entitled: Photosynthesis Research for Sustainability: Keys to Produce Clean Energy.

摘要

光系统II(PSII)是一种膜结合蛋白复合物,它氧化水以产生高能质子,这些质子用于在植物叶片的类囊体膜上建立质子梯度。这种光驱动反应是通过在Kok循环中表征的四个离散氧化步骤[S₁-(S₄/S₀)]从Mn₄CaO₅簇(Mn簇)中提取电子来催化的。为了详细了解质子释放事件以及随后这些高能质子的转运,需要阐明Mn簇的质子化模式。Umena、Kawakami、Shen和Kamiya的新的高分辨率PSII晶体结构是解决这个问题取得进展的良好基础。继我们之前关于Mn簇的氧化和质子化状态的工作之后,在这项工作中,进行了量子化学/静电计算,以估计Mn簇相关基团和原子(如W2、O4、O5和His337)不同质子的pKa。与之前的实验和理论工作大致一致,我们的数据表明W2和His337可能分别处于羟基和中性形式,O5和O4未质子化。本文是名为:可持续性光合作用研究:生产清洁能源的关键的特刊的一部分。

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