首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >C-13 CP/MAS NMR STUDIES OF HEMOPROTEIN MODELS WITH AND WITHOUT AN AXIAL HINDERED BASE - C-13 SHIELDING TENSORS AND COMPARISON WITH HEMOPROTEINS AND X-RAY STRUCTURAL DATA
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C-13 CP/MAS NMR STUDIES OF HEMOPROTEIN MODELS WITH AND WITHOUT AN AXIAL HINDERED BASE - C-13 SHIELDING TENSORS AND COMPARISON WITH HEMOPROTEINS AND X-RAY STRUCTURAL DATA

机译:C-13 CP / MAS NMR研究含或不含轴向斜基的血红蛋白模型-C-13屏蔽张量以及血红蛋白和X射线结构数据的比较

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C-13 cross-polarization magic-angle-spinning (CP/MAS) NMR spectra of several carbonmonoxide (93-99% C-13 enriched) hemoprotein models with 1,2-dimethylimidazole (12-diMeIm) and 1-methylimidazole (1-MeIm) as axial ligands are reported. This enables the (CO)-C-13 spinning sideband manifold to be measured and hence the principal components of the (CO)-C-13 chemical shift tensor to be obtained. Negative polar interactions in the binding pocket of the cap porphyrin model and inhibition of Fe-->CO back-donation result in a reduction in shielding anisotropy; on the contrary, positive distal polar interactions result in an increase in the shielding anisotropy and asymmetry parameter in some models. It appears that the axial hindered base 1,2-dimethylimidazole has little direct effect on the local geometry at the CO site, despite higher rates of CO desorption being observed for such complexes. This suggests that the mechanism by which steric interactions are released for the 1,2-diMeIm complexes compared to 1-MeIm complexes does not involve a significant increase in bending of the Fe-C-O unit. The asymmetry of the shielding tensor of all the heme model compounds studied is smaller than that found for horse myoglobin and rabbit hemoglobin. [References: 65]
机译:具有1,2-二甲基咪唑(12-diMeIm)和1-甲基咪唑(1)的一氧化碳(93-99%C-13富集)血液蛋白模型的C-13交叉极化魔角旋转(CP / MAS)NMR光谱-MeIm)作为轴向配体被报道。这使得能够测量(CO)-C-13纺丝边带歧管,从而获得(CO)-C-13化学位移张量的主要成分。帽卟啉模型的结合口袋中的负极性相互作用和对Fe-> CO返给的抑制导致屏蔽各向异性的降低;相反,在某些模型中,正向远端极性相互作用会导致屏蔽各向异性和不对称参数增加。似乎轴向受阻碱1,2-二甲基咪唑对CO部位的局部几何形状几乎没有直接影响,尽管观察到这类配合物的CO解吸速率更高。这表明与1-MeIm络合物相比,释放1,2-diMeIm络合物的空间相互作用的机理并不涉及Fe-C-O单元弯曲的显着增加。所有研究的血红素模型化合物的屏蔽张量的不对称性均小于马肌红蛋白和兔血红蛋白的屏蔽张量。 [参考:65]

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