Bogusky M J, Naylor A M, Pitzenberger S M, Nutt R F, Brady S F, Colton C D, Sisko J T, Anderson P S, Veber D F
Medicinal Chemistry Department, Merck Sharp & Dohme Research Laboratories, West Point, Pennsylvania.
Int J Pept Protein Res. 1992 Jan;39(1):63-76. doi: 10.1111/j.1399-3011.1992.tb01557.x.
The tripeptide sequence arginine-glycine-aspartic acid (RGD) has been shown to be the key recognition segment in numerous cell adhesion proteins. The solution conformation and dynamics in DMSO-d6 of the cyclic pentapeptides, [formula: see text], a potent fibrinogen receptor antagonist, and [formula: see text], a weak fibrinogen receptor antagonist, have been characterized by nuclear magnetic resonance (NMR) spectroscopy and molecular modeling. 1H-1H distance constraints derived from two-dimensional NOE spectroscopy and torsional angle constraints obtained from 3JNH-H alpha coupling constants, combined with computer-assisted modeling using conformational searching algorithms and energy minimization have allowed several low energy conformations of the peptides to be determined. Low temperature studies in combination with molecular dynamics simulations suggest that each peptide does not exist in a single, well-defined conformation, but as an equilibrating mixture of conformers in fast exchange on the NMR timescale. The experimental results can be fit by considering pairs of low energy conformers. Despite this inherent flexibility, distinct conformational preferences were found which may be related to the biological activity of the peptides.
三肽序列精氨酸 - 甘氨酸 - 天冬氨酸(RGD)已被证明是众多细胞粘附蛋白中的关键识别片段。通过核磁共振(NMR)光谱和分子建模对环状五肽[化学式:见原文](一种有效的纤维蛋白原受体拮抗剂)和[化学式:见原文](一种较弱的纤维蛋白原受体拮抗剂)在氘代二甲亚砜(DMSO-d6)中的溶液构象和动力学进行了表征。从二维NOE光谱得出的1H-1H距离约束以及从3JNH-Hα耦合常数获得的扭转角约束,结合使用构象搜索算法和能量最小化的计算机辅助建模,已确定了肽的几种低能量构象。低温研究与分子动力学模拟相结合表明,每个肽并非以单一的、明确的构象存在,而是作为在NMR时间尺度上快速交换的构象异构体的平衡混合物存在。通过考虑低能量构象异构体对,可以拟合实验结果。尽管具有这种固有的灵活性,但发现了明显的构象偏好,这可能与肽的生物活性有关。