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Strontium EXAFS Reveals the Proximity of Calcium to the Manganese Cluster of Oxygen-Evolving Photosystem II

机译:Strontium EXAFS揭示了钙对析氧光生系统II锰簇的邻近性

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摘要

The oxygen-evolving complex of Photosystem II (PS II) in green plants and algae contains a cluster of four manganese atoms in the active site, which catalyzes the photoinduced oxidation of water to dioxygen. Along with Mn, calcium and chloride ions are necessary cofactors for proper functioning of the complex. A key unresolved question is whether Ca is close to the Mn cluster, within about 3.5 Å. To further test and verify this finding, we substituted strontium for Ca and probed from the Sr point-of-view for any nearby Mn. Sr has been shown to replace Ca and still maintain enzyme activity (about 40% of normal rate). The extended X-ray absorption fine structure (EXAFS) of Sr–PS II probes the local environment around the Sr cofactor to detect any nearby Mn. We focused on the functional Sr by removing nonessential, loosely bound Sr in the protein environment. For comparison, an inactive sample was prepared by treating the intact PS II with hydroxylamine to disrupt the Mn cluster and to produce nonfunctional enzyme. Sr EXAFS results indicate major differences in the phase and amplitude between the functional (intact) and nonfunctional (NH2OH-treated) samples. In intact samples, the Fourier transform of the Sr EXAFS shows a peak that is missing in inactive samples. This Fourier peak II is best simulated by two Mn neighbors at a distance of 3.5 Å. Thus, with X-ray absorption studies on Sr-reconstituted PS II, we confirm the proximity of Ca (Sr) cofactor to the Mn cluster and show that the active site is a Mn–Ca heteronuclear cluster.
机译:在绿色植物和藻类中,光系统II(PS II)的放氧复合物在活性位点中包含一个由四个锰原子组成的簇,该簇可催化水的光诱导氧化为双氧。钙和氯离子与锰,锰离子一起是配合物正常运行所必需的辅助因子。尚未解决的关键问题是,Ca是否接近Mn团簇,在3.5Å之内。为了进一步测试和验证这一发现,我们用锶代替了Ca,并从Sr的角度探测了附近的Mn。已证明Sr可以代替Ca并仍保持酶活性(约为正常速率的40%)。 Sr–PS II的扩展X射线吸收精细结构(EXAFS)探测Sr辅助因子周围的局部环境,以检测附近的任何Mn。我们通过去除蛋白质环境中不必要的,松散结合的Sr来专注于功能性Sr。为了比较,通过用羟胺处理完整的PS II以破坏Mn簇并产生无功能的酶来制备无活性的样品。 Sr EXAFS结果表明,功能性(完整)样品和非功能性(NH2OH处理)样品之间的相位和幅度存在较大差异。在完整样本中,Sr EXAFS的傅立叶变换显示出一个非活动样本中缺少的峰。傅立叶峰II最好由两个Mn邻居以3.5Å的距离模拟。因此,通过对Sr重构的PS II的X射线吸收研究,我们确认了Ca(Sr)辅因子与Mn团簇的接近性,并表明活性部位是Mn-Ca异核团簇。

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