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首页> 外文期刊>Journal of Luminescence >Novel characteristics of persistent spectral hole-burning and hole-filling in Photosystem Ⅱ core complexes
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Novel characteristics of persistent spectral hole-burning and hole-filling in Photosystem Ⅱ core complexes

机译:PhotosystemⅡ核配合物中持久性光谱空穴燃烧和填充的新特征

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摘要

We report spectral hole-burning as well as spontaneous and photo-induced hole-filling in Photosystem Ⅱ (PSII) core complexes. A comparison is made between measurements on initially dark-adapted PSII cores in which the plastoquinone Q_A is either neutral or photo-reduced to Q_A~- by illumination at 1.7 K, with samples where Q_A is reduced by either 260 K illumination or chemical treatment. The latter preparations have the advantage of exhibiting minimal change in Q_A~- with either time or illumination at 1.7 K. This stability allowed us to investigate the association of rapid hole-filling reported for PSII core complexes with the spontaneous re-oxidation of Q_A~-, which occurs in dark-adapted samples after 1.7 K illumination. We find that spontaneous hole-filling also occurs in PSII with stable Q_A~-configurations. In either class of sample, spontaneous hole-filling occurs at significantly greater rates than for 'normal' two level system hole-burning processes in chlorophyll-protein antenna complexes. It is suggested that the rapid spontaneous hole-filling is associated with protein relaxation within the energy landscape of the PSII core proteins. This landscape may also be involved in influencing other processes such as low-temperature Q_A reduction and re-oxidation. Shallow holes burnt in Q_A samples exhibit a narrow (~2 cm~(-1)) photoproduct on the low energy side of the hole. Subsequent illumination of holes burnt at 690 nm with 705 nm light induces strong hole-filling. These results are discussed with respect to charge and excitation energy transfer processes in PSII cores.
机译:我们报道了光洞燃烧以及在PhotosystemⅡ(PSII)核心配合物中的自发性和光诱导的空穴填充。在最初适应黑暗的PSII磁芯上进行测量之间的比较,其中通过1.7 K照射将质体醌Q_A中性或光还原为Q_A〜-,并通过260 K照射或化学处理将Q_A降低的样品进行比较。后者的制备具有随时间或在1.7 K光照下Q_A〜-的变化最小的优点。这种稳定性使我们能够研究PSII核心配合物报道的快速空穴填充与Q_A〜的自发再氧化的关系。 -在1.7 K照明后的暗适应样品中发生。我们发现自发的空穴填充也发生在具有稳定Q_A〜-构型的PSII中。在任一类样品中,自发的空穴填充率都比叶绿素-蛋白质天线复合物中的“正常”二级系统空穴燃烧过程高得多。提示快速自发的孔填充与PSII核心蛋白的能量分布内的蛋白松弛有关。这种情况也可能会影响其他过程,例如低温Q_A还原和再氧化。 Q_A样品中燃烧的浅孔在孔的低能侧显示出狭窄的(〜2 cm〜(-1))光产物。随后用705 nm的光照射在690 nm处燃烧的空穴会引起强烈的空穴填充。讨论了有关PSII磁芯中电荷和激发能转移过程的这些结果。

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