首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >Conformational study of a guaiacyl beta-O-4 lignin model compound by NMR. Examination of intramolecular hydrogen bonding interactions and conformational flexibility in solution
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Conformational study of a guaiacyl beta-O-4 lignin model compound by NMR. Examination of intramolecular hydrogen bonding interactions and conformational flexibility in solution

机译:通过核磁共振对愈创木脂基β-O-4木质素模型化合物的构象研究。分子内氢键相互作用和溶液中构象柔性的检验

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Intramolecular H-bonding interactions were investigated in solution for the threo and erythro diastereomeric forms of a guaiacyl beta-O-4 lignin model compound by using the NMR data obtained from hydroxyl protons. Temperature coefficients of the chemical shifts (ddelta/dT) and coupling constants ((3)J(HCOH)) were measured in aprotic and protic solutions: DMSO-d(6), acetone-d(6) and acetone-d(6)-water. The NMR parameters do not support the existence of strong and persistent intramolecular H-bonds that could participate in the stabilization of the guaiacyl beta-O-4 structure in solution, but instead indicate that intermolecular H-bonds to solvent predominate. 1D NOE experiments nevertheless revealed the presence of a direct chemical exchange between the hydroxyl protons, suggesting the possible existence of weak and transient intramolecular H-bonding interactions. The conformational flexibility of the threo structure was also investigated in acetone solution from the measurement of long-range H-1, H-1 and H-1, C-13 coupling constants and from NOESY experiments. The NMR data are not consistent with any single conformation, indicating that different conformers co-exist in solution. The experimental results support the conformational flexibility predicted by molecular dynamics simulations performed in a previous study. Finally, both experimental and theoretical approaches indicate that weak intramolecular H-bonds can exist transiently in solution, breaking and reforming as the beta-O-4 molecule undergoes conformational interconversion, but cannot be invoked as possible means of conferring rigidity to the beta-O-4 structure. Copyright (C) 2004 John Wiley Sons, Ltd. [References: 53]
机译:通过使用从羟基质子获得的NMR数据研究了愈创木脂基β-O-4木质素模型化合物的苏式和赤式非对映异构形式的分子内H键相互作用。在非质子和质子溶液中测量化学位移的温度系数(ddelta / dT)和耦合常数((3)J(HCOH)):DMSO-d(6),丙酮-d(6)和丙酮-d(6 )-水。 NMR参数不支持存在强而持久的分子内氢键,这些氢键可能参与溶液中愈创木脂基β-O-4结构的稳定作用,而是表明分子间与溶剂的氢键占主导地位。然而,一维NOE实验表明羟基质子之间存在直接的化学交换,这表明可能存在弱且短暂的分子内H键相互作用。还通过测量远程H-1,H-1和H-1,C-13偶联常数和NOESY实验,在丙酮溶液中研究了苏式结构的构象柔韧性。 NMR数据与任何单一构象均不一致,表明溶液中共存不同构象异构体。实验结果支持在先前研究中进行的分子动力学模拟所预测的构象柔性。最后,实验和理论方法均表明,弱分子内氢键可在溶液中短暂存在,随着β-O-4分子进行构象互变而断裂和重整,但不能作为赋予β-O刚性的可能手段进行调用-4结构。版权所有(C)2004 John Wiley Sons,Ltd. [引用:53]

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