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首页> 外文期刊>Journal of the American Chemical Society >Photo-CIDNP MAS NMR in intact cells of Rhodobacter sphaeroides R26: Molecular and atomic resolution at nanomolar concentration
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Photo-CIDNP MAS NMR in intact cells of Rhodobacter sphaeroides R26: Molecular and atomic resolution at nanomolar concentration

机译:球形红细菌R26完整细胞中的Photo-CIDNP MAS NMR:在纳摩尔浓度下的分子和原子分辨率

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摘要

Photochemically induced dynamic nuclear polarization (photo-CIDNP) is observed in photosynthetic reaction centers of the carotenoid-less strain R26 of the purple bacterium Rhodobacter sphaeroides by C-13 solid-state NMR at three different magnetic fields (4.7, 9.4, and 17.6 T). The signals of the donor appear enhanced absorptive (positive) and of the acceptor emissive (negative). This spectral feature is in contrast to photo-CIDNP data of reactions centers of Rhodobacter sphaeroides wildtype reported previously (Prakash, S.; Alia; Gast, P.; de Groot, H. J. M.; Jeschke, G.; Matysik, J. J. Am. Chem. Soc. 2005, 127, 14290-14298) in which all signals appear emissive. The difference is due to an additional mechanism occurring in RCs of R26 in the long-living triplet state of the donor, allowing for spectral editing by different enhancement mechanisms. The overall shape of the spectra remains independent of the magnetic field. The strongest enhancement is observed at 4.7 T, enabling the observation of photo-CIDNP enhanced NMR signals from reaction center cofactors in entire bacterial cells allowing for detection of subtle changes in the electronic structure at nanomolar concentration of the donor cofactor. Therefore, we establish in this paper photo-CIDNP MAS NMR as a method to study the electronic structure of photosynthetic cofactors at the molecular and atomic resolution as well as at cellular concentrations.
机译:在三个不同的磁场(4.7、9.4和17.6 T)下,通过C-13固态NMR在紫色细菌球形红球菌的无类胡萝卜素菌株R26的光合作用中心观察到光化学诱导的动态核极化(photo-CIDNP) )。供体的信号显示出增强的吸收性(正)和受体的发射性(负性)。该光谱特征与先前报道的球形红球菌野生型反应中心的光CIDNP数据相反(Prakash,S .; Alia; Gast,P .; de Groot,HJM; Jeschke,G .; Matysik,JJ Am.Chem。 SOC。2005,127,14290-14298),其中所有信号出现发射。差异是由于在供体的长效三联体状态下R26的RC中出现了其他机制,从而允许通过不同的增强机制进行光谱编辑。光谱的整体形状与磁场无关。在4.7 T处观察到最强的增强作用,从而能够观察到整个细菌细胞中来自反应中心辅助因子的photo-CIDNP增强的NMR信号,从而可以检测纳摩尔浓度的供体辅助因子的电子结构的细微变化。因此,我们在本文中建立了光CIDNP MAS NMR作为研究分子和原子分辨率以及细胞浓度下光合辅助因子电子结构的方法。

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