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Photochemically induced dynamic nuclear polarisation in entire bacterial photosynthetic units observed by C-13 magic-angle spinning NMR

机译:通过C-13魔角旋转NMR观察到整个细菌光合作用单元中的光化学诱导的动态核极化

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Photochemically induced dynamic nuclear polarisation has been observed from entire photosynthetic units (PSUs) bound to chromatophore membrane (membrane-bound PSU) of the purple bacteria Rhodobacter sphaeroides, which have been selectively C-13-isotope enriched at all BChl and BPheo cofactors. These 1.5 MDa membrane-bound protein complexes comprise reaction centres as well as the antenna systems called light harvesting complexes I and II. Due to light-induced enhancement of nuclear polarisation, the C-13 magic-angle spinning (MAS) NMR spectrum shows absorptive lines originating from the cofactors involved into the photochemical machinery and allowing the determination of the electronic ground state structure at atomic resolution. Addition of detergent released intact PSU from the chromatophore membrane (so called detergent solubilised PSU) and caused significant changes in the sign and intensity pattern of the light-induced MAS NMR spectrum. In contrast, detergent solubilised PSU and detergent solubilised bacterial reaction centres with the same isotope label pattern exhibit essentially the same chemical shifts with only minor differences in the intensity pattern. The pronounced differences between intact membrane-bound and detergent solubilised PSU are tentatively explained by the loss of self-orientation of the membrane-bound samples by solubilisation. This interpretation suggests that the theoretically predicted anisotropy-of the light-induced nuclear polarisation has been observed for the first time. (C) 2003 Elsevier B.V. All rights reserved. [References: 36]
机译:从与紫色细菌球形红细菌的染色体细胞膜结合的整个光合作用单元(PSU)观察到光化学诱导的动态核极化(PSU),球形紫色球形细菌已选择性地在所有BChl和BPheo辅助因子上富集了C-13同位素。这些1.5 MDa膜结合蛋白复合物包括反应中心以及称为光收集复合物I和II的天线系统。由于光诱导的核极化增强,C-13魔角旋转(MAS)NMR光谱显示出吸收线,该吸收线源自光化学机械中涉及的辅因子,并允许以原子分辨率确定电子基态结构。添加去污剂会从色谱膜上释放完整的PSU(所谓的去污剂溶解的PSU),并导致光诱导MAS NMR光谱的符号和强度模式发生重大变化。相比之下,具有相同同位素标记图案的去污剂溶解的PSU和去污剂溶解的细菌反应中心显示出基本相同的化学位移,而强度模式只有很小的差异。完整的膜结合样品和去污剂溶解的PSU之间的显着差异暂时通过溶解使膜结合样品失去自我取向而得到了解释。这种解释表明,首次观察到了光诱导核极化的理论预测各向异性。 (C)2003 Elsevier B.V.保留所有权利。 [参考:36]

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