Gervais Claire, Wüst Thomas, Landau D P, Xu Ying
Department of Biochemistry and Molecular Biology, Computational Systems Biology Laboratory and Institute of Bioinformatics, The University of Georgia, Athens, Georgia 30602, USA.
J Chem Phys. 2009 Jun 7;130(21):215106. doi: 10.1063/1.3148186.
A two-step Monte Carlo procedure is developed to investigate the dimerization process of the homodimer glycophorin A. In the first step, the energy density of states of the system is estimated by the Wang-Landau algorithm. In the second step, a production run is performed during which various energetical and structural observables are sampled to provide insight into the thermodynamics of the system. All seven residues LIxxGVxxGVxxT constituting the contact interface play a dominating role in the dimerization, however at different stages of the process. The leucine motif and to some extent the GxxxG motif are involved at the very beginning of the dimerization when the two helices come into contact, ensuring an interface already similar to the native one. At a lower temperature, the threonine motif stabilizes by hydrogen bonding the dimer, which finally converges toward its native state at around 300 K. The power and flexibility of the procedure employed here makes it an interesting alternative to other Monte Carlo methods for the study of similar protein systems.
开发了一种两步蒙特卡罗程序来研究同型二聚体血型糖蛋白A的二聚化过程。第一步,通过王-兰道算法估计系统的能量态密度。第二步,进行生产运行,在此期间对各种能量和结构可观测量进行采样,以深入了解系统的热力学。构成接触界面的所有七个残基LIxxGVxxGVxxT在二聚化过程中都起着主导作用,但在过程的不同阶段。亮氨酸基序以及在某种程度上GxxxG基序在二聚化开始时,当两个螺旋接触时就参与其中,确保界面已经类似于天然界面。在较低温度下,苏氨酸基序通过氢键作用使二聚体稳定,二聚体最终在约300 K时趋向其天然状态。这里采用的程序的强大功能和灵活性使其成为研究类似蛋白质系统的其他蒙特卡罗方法的有趣替代方法。