Bella J, Eaton M, Brodsky B, Berman H M
Department of Chemistry, Rutgers University, New Brunswick, NJ 08855.
Science. 1994 Oct 7;266(5182):75-81. doi: 10.1126/science.7695699.
The structure of a protein triple helix has been determined at 1.9 angstrom resolution by x-ray crystallographic studies of a collagen-like peptide containing a single substitution of the consensus sequence. This peptide adopts a triple-helical structure that confirms the basic features determined from fiber diffraction studies on collagen: supercoiling of polyproline II helices and interchain hydrogen bonding that follows the model II of Rich and Crick. In addition, the structure provides new information concerning the nature of this protein fold. Each triple helix is surrounded by a cylinder of hydration, with an extensive hydrogen bonding network between water molecules and peptide acceptor groups. Hydroxyproline residues have a critical role in this water network. The interaxial spacing of triple helices in the crystal is similar to that in collagen fibrils, and the water networks linking adjacent triple helices in the crystal structure are likely to be present in connective tissues. The breaking of the repeating (X-Y-Gly)n pattern by a Gly-->Ala substitution results in a subtle alteration of the conformation, with a local untwisting of the triple helix. At the substitution site, direct interchain hydrogen bonds are replaced with interstitial water bridges between the peptide groups. Similar conformational changes may occur in Gly-->X mutated collagens responsible for the diseases osteogenesis imperfecta, chondrodysplasias, and Ehlers-Danlos syndrome IV.
通过对含有共有序列单取代的类胶原肽进行X射线晶体学研究,已在1.9埃分辨率下确定了蛋白质三螺旋的结构。该肽采用三螺旋结构,证实了从胶原蛋白纤维衍射研究中确定的基本特征:聚脯氨酸II螺旋的超螺旋以及遵循Rich和Crick模型II的链间氢键。此外,该结构提供了有关这种蛋白质折叠性质的新信息。每个三螺旋被一个水合圆柱体包围,水分子与肽受体基团之间存在广泛的氢键网络。羟脯氨酸残基在这个水网络中起关键作用。晶体中三螺旋的轴间距与胶原纤维中的相似,并且晶体结构中连接相邻三螺旋的水网络可能存在于结缔组织中。由甘氨酸被丙氨酸取代导致的重复(X-Y-甘氨酸)n模式的破坏会导致构象的细微改变,三螺旋局部解旋。在取代位点,链间直接氢键被肽基团之间的间隙水桥取代。在导致成骨不全、软骨发育不全和埃勒斯-当洛综合征IV型疾病的甘氨酸被X取代的胶原蛋白中可能会发生类似的构象变化。