Department of Chemistry and Chemical Biology, BioMaPs Institute for Quantitative Biology, Rutgers University, Piscataway, New Jersey 08854, USA.
J Am Chem Soc. 2009 Dec 30;131(51):18194-5. doi: 10.1021/ja9056823.
The degree of H bonding is thought to play an important role in defining collagen recognition sites or regions that contain disease-causing collagen mutations. For collagen model peptides, structure determination by standard NMR approaches is limited because of their rodlike anisotropic shape and repeating sequence. We demonstrate that (15)N relaxation NMR experiments and their dependence on rotational diffusion anisotropy can be used to obtain novel structural information about the orientation of the N-H bonds relative to the protein backbone in these rodlike systems. (15)N relaxation measurements on a triple-helical peptide that models a collagen sequence just C-terminal to the unique collagenase cleavage site indicated that the angle between the N-H bond vector and the diffusion tensor of the Gly residues needed to be readjusted. After the Gly amide protons were placed out of the C'-N-Calpha plane, the hydrogen-bond angles and distances were recalculated and shown to be closer to 180 degrees and shorter, respectively. The data suggest that deviations of the Gly amide protons from their standard positions arise from hydrogen-bonding effects and that these may impact the hydrogen-bond strengths in this collagen recognition region.
氢键的程度被认为在确定胶原蛋白识别位点或包含致病胶原蛋白突变的区域方面起着重要作用。对于胶原蛋白模型肽,由于其棒状各向异性形状和重复序列,通过标准 NMR 方法进行结构测定受到限制。我们证明,(15)N 弛豫 NMR 实验及其对旋转扩散各向异性的依赖性可用于获得这些棒状系统中 N-H 键相对于蛋白质骨架的取向的新颖结构信息。对模型胶原蛋白序列位于独特胶原酶切割位点 C 末端的三螺旋肽进行的(15)N 弛豫测量表明,需要重新调整 N-H 键矢量和 Gly 残基扩散张量之间的夹角。将 Gly 酰胺质子放置在 C'-N-Calpha 平面之外后,重新计算氢键角和距离,结果表明它们分别更接近 180 度和更短。数据表明,Gly 酰胺质子偏离其标准位置是由于氢键的影响,并且这些可能影响胶原蛋白识别区域的氢键强度。