Bella Jordi, Humphries Martin J
Wellcome Trust Centre for Cell Matrix Research, Faculty of Life Sciences, University of Manchester.
BMC Struct Biol. 2005 Feb 14;5:4. doi: 10.1186/1472-6807-5-4.
The Arg-Gly-Asp (RGD) cell adhesion sequence occurs in several extracellular matrix molecules known to interact with integrin cell-surface receptors. Recently published crystal structures of the extracellular regions of two integrins in complex with peptides containing or mimicking the RGD sequence have identified the Arg and Asp residues as key specificity determinants for integrin recognition, through hydrogen bonding and metal coordination interactions. The central Gly residue also appears to be in close contact with the integrin surface in these structures.
When hydrogen atoms are modelled on the central Gly residue with standard stereochemistry, the interaction between this residue and a carbonyl group in the integrin surface shows all the hallmarks of Calpha-H...O = C hydrogen bonding, as seen in the collagen triple helix and in many crystal structures of small organic molecules. Moreover, molecular dynamic simulations of the docking of RGD-containing fragments on integrin surfaces support the occurrence of these interactions. There appears to be an array of four weak and conventional hydrogen bonds lining up the RGD residues with main chain carbonyl groups in the integrin surface.
The occurrence of weak Calpha-H...O = C hydrogen bonds in the RGD-integrin interaction highlights the importance of the conserved Gly residue in the RGD motif and its contribution to integrin-ligand binding specificity. Our analysis shows how weak hydrogen bonds may also play important biological roles by contributing to the specificity of macromolecular recognition.
精氨酸 - 甘氨酸 - 天冬氨酸(RGD)细胞黏附序列存在于几种已知与整联蛋白细胞表面受体相互作用的细胞外基质分子中。最近发表的两种整联蛋白细胞外区域与含RGD序列或模拟RGD序列的肽形成复合物的晶体结构,通过氢键和金属配位相互作用,确定了精氨酸和天冬氨酸残基是整联蛋白识别的关键特异性决定因素。在这些结构中,中心甘氨酸残基似乎也与整联蛋白表面紧密接触。
当以标准立体化学对中心甘氨酸残基进行氢原子建模时,该残基与整联蛋白表面羰基之间的相互作用显示出α - H...O = C氢键的所有特征,如在胶原蛋白三螺旋以及许多小分子有机晶体结构中所见。此外,含RGD片段与整联蛋白表面对接的分子动力学模拟支持了这些相互作用的存在。似乎有一系列四个弱常规氢键将RGD残基与整联蛋白表面的主链羰基排列在一起。
RGD - 整联蛋白相互作用中存在弱α - H...O = C氢键,突出了RGD基序中保守甘氨酸残基的重要性及其对整联蛋白 - 配体结合特异性的贡献。我们的分析表明,弱氢键如何通过促进大分子识别的特异性也可能发挥重要的生物学作用。