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Current Understanding of the Mechanism of Water Oxidation in Photosystem II and Its Relation to XFEL Data.
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2020-06-22 , DOI: 10.1146/annurev-biochem-011520-104801
Nicholas Cox 1 , Dimitrios A Pantazis 2 , Wolfgang Lubitz 3
Affiliation  

The investigation of water oxidation in photosynthesis has remained a central topic in biochemical research for the last few decades due to the importance of this catalytic process for technological applications. Significant progress has been made following the 2011 report of a high-resolution X-ray crystallographic structure resolving the site of catalysis, a protein-bound Mn4CaOx complex, which passes through ≥5 intermediate states in the water-splitting cycle. Spectroscopic techniques complemented by quantum chemical calculations aided in understanding the electronic structure of the cofactor in all (detectable) states of the enzymatic process. Together with isotope labeling, these techniques also revealed the binding of the two substrate water molecules to the cluster. These results are described in the context of recent progress using X-ray crystallography with free-electron lasers on these intermediates. The data are instrumental for developing a model for the biological water oxidation cycle.

中文翻译:


目前对光系统II中水氧化机理的了解及其与XFEL数据的关系。

由于该催化过程对技术应用的重要性,在过去的几十年中,光合作用中水氧化的研究一直是生化研究的中心课题。在2011年报告了高分辨率X射线晶体学结构以解析催化位点后,蛋白质结合的Mn 4 CaO x取得了重大进展。络合物,在水分解循环中通过≥5个中间状态。光谱技术辅以量子化学计算,有助于理解处于酶促过程所有(可检测)状态的辅因子的电子结构。与同位素标记一起,这些技术还揭示了两个底物水分子与团簇的结合。这些结果是在X射线晶体学和这些中间体上的自由电子激光的最新进展的背景下描述的。数据有助于建立生物水氧化循环模型。

更新日期:2020-06-23
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