Shobana S
Molecular Biophysics Unit, Indian Institute of Science, Bangalore.
Biophys Chem. 1993 Feb;46(1):77-89. doi: 10.1016/0301-4622(93)87009-l.
Proline plays an important role in the secondary structure of proteins. In the pursuit of understanding its structural role, Proline containing helices with constraints have been studied by employing molecular dynamics (MD) technique. In the present study, the constraint introduced is a threonine residue, whose sidechain has intramolecular hydrogen bond interaction with the backbone oxygen atom. The three systems that have been chosen for characterization are: (1) Ace-(Ala)12-Thr-Pro-(Ala)10-NHMe, (2) Ace-(Ala)13-Pro-Ala-Thr-(Ala)8-NHMe and (3) Ace-(Ala)13-Pro-(Ala)3-Thr-(Ala)6-NHMe. The equilibrium structures and structural transitions have been identified by monitoring the backbone dihedral angles, bend related parameters and the hydrogen bond interactions. The MD averages and root mean square (r.m.s.) fluctuations are compared and discussed. Energy minimization has been carried out on selected MD simulated points in order to analyze the characteristics of different conformations.
脯氨酸在蛋白质的二级结构中起着重要作用。为了探究其结构作用,人们通过分子动力学(MD)技术对含有脯氨酸且带有约束条件的螺旋结构进行了研究。在本研究中,引入的约束条件是一个苏氨酸残基,其侧链与主链氧原子存在分子内氢键相互作用。选取用于表征的三个体系分别为:(1)Ace-(Ala)12-Thr-Pro-(Ala)10-NHMe,(2)Ace-(Ala)13-Pro-Ala-Thr-(Ala)8-NHMe和(3)Ace-(Ala)13-Pro-(Ala)3-Thr-(Ala)6-NHMe。通过监测主链二面角、弯曲相关参数以及氢键相互作用来确定平衡结构和结构转变。对MD平均值和均方根(r.m.s.)波动进行了比较和讨论。为了分析不同构象的特征,对选定的MD模拟点进行了能量最小化处理。