Thomas A, Roux B, Smith J C
Département d'Ingénierie et d'Etudes des Protéines, Centre d'Etudes de Saclay, Gif-sur-Yvette, France.
Biopolymers. 1993 Aug;33(8):1249-70. doi: 10.1002/bip.360330811.
The flexibility of a series of cyclic peptides derived from the epitope of a snake toxin is investigated using computer simulation techniques. Molecular dynamics (MD) simulations and vibrational analyses are performed on chemically constrained peptides modeled on the parent protein loop. In the 50 ps MD simulations, large variations in the atomic fluctuations are seen between the peptides, and can be related to the nature of the chemical constraints present in the molecules. Normal mode analyses are performed on energy-minimized configurations derived from the dynamics trajectories. The atomic fluctuations calculated from the normal modes are about 30% of those of the molecular dynamics for the more flexible peptides and 70% for the more constrained molecules. The calculated differences in flexibility between the molecules are much less significant in the harmonic approximation.
利用计算机模拟技术研究了一系列源自蛇毒素表位的环肽的柔韧性。对以亲本蛋白环为模型的化学约束肽进行了分子动力学(MD)模拟和振动分析。在50皮秒的MD模拟中,肽之间的原子涨落存在很大差异,这可能与分子中存在的化学约束的性质有关。对从动力学轨迹导出的能量最小化构型进行了简正模式分析。对于较灵活的肽,由简正模式计算出的原子涨落在分子动力学涨落的30%左右,而对于约束更强的分子,这一比例为70%。在简谐近似中,分子间柔韧性的计算差异要小得多。