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Deuterium nuclear magnetic resonance of specifically labeled native collagen. Investigation of protein molecular dynamics using the quadrupolar echo technique.

机译:特定标记的天然胶原的氘核磁共振。使用四极回波技术研究蛋白质分子动力学。

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摘要

Collagen was labeled with [3,3,3-d3]alanine and with [d10]leucine via tissue culture. 2H nuclear magnetic resonance (NMR) spectra were obtained of collagen in solution and as fibrils using the quadrupolar echo technique. The 2H NMR data for [3,3,3-d3]alanine-labeled collagen fibrils were analyzed in terms of a model for motion in which the molecule is considered to jump between two sites, separated azimuthally by an angle 2 delta, in a time which is rapid compared with the residence time in both sites. The data suggest that the molecule undergoes reorientation over an angle, 2 delta, of approximately 30 degrees in the fibrils, and that the average angle between the alanine C alpha--C beta bond axis and the long axis of the helix is approximately 75 degrees. Reorientation is possibly segmental. The T2 for [3,3,3-d3]alanine-labeled collagen fibrils was estimated to be 105 mus. The 2H NMR data for the methyl groups of [d10]leucine-labeled collagen were analyzed qualitatively. These data established that for collagen in solution and as fibrils, rotation occurs about the leucine side-chain bonds, in addition to threefold methyl rotation and reorientation of the peptide backbone. The T2 for the methyl groups of leucine-labeled collagen is estimated to be approximately 130 mus. Taken together, these data provide strong evidence that both polypeptide backbone reorientation and amino acid side-chain motion occur in collagen molecules in the fibrils. Stabilizing interactions that determine fibril structure must therefore depend upon at least two sets of contacts in any given local region.
机译:通过组织培养将胶原蛋白标记为[3,3,3-d3]丙氨酸和[d10]亮氨酸。使用四极回波技术获得了溶液中和纤丝状胶原的2H核磁共振波谱。根据运动模型分析了[3,3,3-d3]丙氨酸标记的胶原纤维的2H NMR数据,在该模型中,分子被认为在两个位置之间跳跃,两个位置在方位角上相隔了2个角度。与在两个地点的停留时间相比,时间要短。数据表明该分子在原纤维中经过约30度的2δ角重新定向,丙氨酸C α–Cβ键轴与螺旋长轴之间的平均角约为75度。重新定向可能是分段的。 [3,3,3-d3]丙氨酸标记的胶原纤维的T2估计为105 mus。定性分析了[d10]亮氨酸标记的胶原蛋白的甲基的2 H NMR数据。这些数据证实,对于溶液中的胶原蛋白和作为原纤维,除了三倍的甲基旋转和肽主链的重新定向之外,还围绕亮氨酸侧链键发生旋转。亮氨酸标记的胶原蛋白的甲基的T2估计约为130亩。综上所述,这些数据提供了有力的证据表明,多肽主链的重新定向和氨基酸侧链运动都发生在原纤维的胶原分子中。因此,确定原纤维结构的稳定相互作用必须取决于任何给定局部区域中的至少两组接触。

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