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首页> 外文期刊>Journal of Biomolecular NMR >Heteronuclear 2D (H-1-C-13) MAS NMR resolves the electronic structure of coordinated histidines in light-harvesting complex II: Assessment of charge transfer and electronic delocalization effect
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Heteronuclear 2D (H-1-C-13) MAS NMR resolves the electronic structure of coordinated histidines in light-harvesting complex II: Assessment of charge transfer and electronic delocalization effect

机译:异核2D(H-1-C-13)MAS NMR解析集光体中配位组氨酸的电子结构II:电荷转移和电子离域效应的评估

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In a recent MAS NMR study, two types of histidine residues in the light-harvesting complex II (LH2) of Rhodopseudomonas acidophila were resolved: Type I (neutral) and Type 2 (positively charged) (Alia et al. J. Am. Chem. Soc.). The isotropic C-13 shifts of histidines coordinating to B850 BChl a are similar to fully positively charged histidine, while the N-15 shift anisotropy shows a predominantly neutral character. In addition the possibility that the ring currents are quenched by overlap in the superstructure of the complete ring of 18 B850 molecules in the LH2 complex could not be excluded. In the present work, by using two-dimensional heteronuclear (H-1-C-13) dipolar correlation spectroscopy with phase-modulated Lee-Goldburg homonuclear H-1 decoupling applied during the t(1) period, a clear and unambiguous assignment of the protons of histidine interacting with the magnesium of a BChl a molecule is obtained and a significant ring current effect from B850 on the coordinating histidine is resolved. Using the ring current shift on 1H, we refine the 13C chemical shift assignment of the coordinating histidine and clearly distinguish the electronic structure of coordinating histidines from that of fully positively charged histidine. The DFT calculations corroborate that the coordinating histidines carry similar to0.2 electronic equivalent of positive charge in LH2. In addition, the data indicate that the ground state electronic structures of individual BChl a/His complexes is largely independent of supermolecular 7 interactions in the assembly of 18 B850 ring in LH2.
机译:在最近的MAS NMR研究中,解决了嗜酸红假单胞菌光捕获复合物II(LH2)中的两种类型的组氨酸残基:I型(中性)和2型(带正电荷)(Alia等人,J.Am.Chem。 (Soc。)。组氨酸与B850 BChla的组氨酸各向同性C-13转变与完全带正电的组氨酸相似,而N-15转变各向异性表现出主要是中性的特征。此外,不能排除环电流被LH2络合物中18个B850分子的完整环的上层结构重叠而淬灭的可能性。在目前的工作中,通过使用二维异核(H-1-C-13)偶极相关光谱技术,并在t(1)期间应用了相调制的Lee-Goldburg同核H-1解耦,可以清晰,明确地分配获得了与BChl a分子的镁相互作用的组氨酸的质子,并且解决了B850对配位组氨酸的显着环电流效应。使用1H上的环电流位移,我们改进了配位组氨酸的13C化学位移分配,并清楚地区分了配位组氨酸与完全带正电的组氨酸的电子结构。 DFT计算证实了配位组氨酸在LH2中携带的电子等效量为0.2电子当量。此外,数据表明,单个BChla / His配合物的基态电子结构在很大程度上与LH2中18 B850环的组装中的超分子7相互作用无关。

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