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HYDROGEN BONDING NETWORKS IN PROTEINS AS REVEALED BY THE AMIDE (1)J(NC') COUPLING CONSTANT

机译:酰胺(1)J(NC')偶联常数显示的蛋白质中的氢键合网络

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A regular dependence of the (1)J(NC') coupling constant on the nature of amide group hydrogen bonding is observed in the model compound, N-acetylglycine. Hydrogen bonding of the amide oxygen increases the coupling constant, whereas hydrogen bonding of the amide hydrogen decreases it. This establishes the (1)J(NC') coupling constant as a useful probe for amide group hydrogen bonding in proteins. From measured (1)J(NC') coupling constants in human ubiquitin, characteristic sequences of the coupling constant are observed which correlate with the protein secondary structure. In the alpha-helix, the coupling constant does not vary much (15.3 +/- 0.5 Hz). In beta-sheets, variations are larger (15.5 +/- 1.5 Hz), except in the central region of the parallel and antiparallel P-sheets, where the coupling constant exhibits rather regular values. In this region, significant correlation of the coupling constants within the lines of interstrand N-H (...) O=C hydrogen bonding is observed, indicating a cooperative polarization of peptide bonds in the H-bonding network. The largest change of the coupling constant is found within reverse turns. At position 2 of reverse turns the coupling constant has the lowest values (13.9 +/- 0.8 Hz), whereas at position 4 the values are highest (16.6 +/- 0.6 Hz). This change of the coupling constant within the three residues of reverse turns is caused by specific hydrogen bonding of amide groups in the reverse turns. The result indicates that the intraprotein N-H (...) O=C hydrogen bonds of the main-chain amide groups are weaker than the hydrogen bonds; of these groups to water. [References: 24]
机译:在模型化合物N-乙酰基甘氨酸中观察到(1)J(NC')耦合常数对酰胺基氢键键合性质的规律性依赖性。酰胺氧的氢键增加了偶联常数,而酰胺氢的氢键降低了偶联常数。这建立了(1)J(NC')耦合常数,作为蛋白质中酰胺基氢键的有用探针。从人遍在蛋白中测量的(1)J(NC')偶联常数,观察到偶联常数的特征序列,其与蛋白质二级结构相关。在α-螺旋中,耦合常数变化不大(15.3 +/- 0.5 Hz)。在β-折叠纸中,变化较大(15.5 +/- 1.5 Hz),除了在平行和反平行P-折叠纸的中心区域,其中耦合常数呈现相当规则的值。在该区域中,观察到链间N-H(...)O = C氢键结合线内的偶联常数具有显着相关性,表明H键网络中肽键的协同极化。在反向旋转中发现耦合常数的最大变化。在反向匝数的位置2处,耦合常数具有最低值(13.9 +/- 0.8 Hz),而在位置4处,耦合常数最高(16.6 +/- 0.6 Hz)。反向的三个残基内的偶合常数的这种变化是由反向的酰胺基团的特定氢键引起的。结果表明,主链酰胺基的蛋白内N-H(...)O = C氢键弱于氢键;这些人群中有水。 [参考:24]

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