首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Exploring Transition Pathway and Free-Energy Profile of Large-Scale Protein Conformational Change by Combining Normal Mode Analysis and Umbrella Sampling Molecular Dynamics
【24h】

Exploring Transition Pathway and Free-Energy Profile of Large-Scale Protein Conformational Change by Combining Normal Mode Analysis and Umbrella Sampling Molecular Dynamics

机译:结合模式分析和伞采样分子动力学探索大规模蛋白质构象变化的过渡途径和自由能谱

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Large-scale conformational changes of proteins are usually associated with the binding of ligands. Because the conformational changes are often related to the biological functions of proteins, understanding the molecular mechanisms of these motions and the effects of ligand binding becomes very necessary. In the present study, we use the combination of normal-mode analysis and umbrella sampling molecular dynamics simulation to delineate the atomically detailed conformational transition pathways and the associated free-energy landscapes for three well-known protein systems, viz., adenylate kinase (AdK), calmodulin (CaM), and p38α kinase in the absence and presence of respective ligands. For each protein under study, the transient conformations along the conformational transition pathway and thermodynamic observables are in agreement with experimentally and computationally determined ones. The calculated free-energy profiles reveal that AdK and CaM are intrinsically flexible in structures without obvious energy barrier, and their ligand binding shifts the equilibrium from the ligand-free to ligand-bound conformation (population shift mechanism). In contrast, the ligand binding to p38α leads to a large change in free-energy barrier (ΔΔG ≈ 7 kcal/mol), promoting the transition from DFG-in to DFG-out conformation (induced fit mechanism). Moreover, the effect of the protonation of D168 oh the conformational change of p38α is also studied, which reduces the free-energy difference between the two functional states of p38α and thus further facilitates the conformational interconversion. Therefore, the present study suggests that the detailed mechanism of ligand binding and the associated conformational transition is not uniform for all kinds of proteins but correlated to their respective biological functions.
机译:蛋白质的大规模构象变化通常与配体的结合有关。由于构象变化通常与蛋白质的生物学功能有关,因此了解这些运动的分子机制以及配体结合的影响变得非常必要。在本研究中,我们使用正态分析和伞式采样分子动力学模拟相结合,描绘了三种著名蛋白质系统(即腺苷酸激酶(AdK)的原子详细的构象转变途径和相关的自由能态势),钙调蛋白(CaM)和p38α激酶(不存在和存在各自的配体)。对于每种被研究的蛋白质,沿着构象转变途径的瞬时构象和热力学可观察物与实验和计算确定的蛋白质一致。计算得出的自由能图谱表明,AdK和CaM在结构上具有固有的柔性,而没有明显的能量垒,并且它们的配体结合将平衡从无配体构象转移到与配体结合的构象(种群移动机制)。相反,配体与p38α的结合导致自由能垒的大变化(ΔΔG≈7 kcal / mol),从而促进了从DFG-in构型到DFG-out构型的转变(诱导的拟合机制)。此外,还研究了D168的质子化对p38α的构象变化的影响,这减小了p38α的两个功能状态之间的自由能差,从而进一步促进了构象互变。因此,本研究表明配体结合和相关构象转变的详细机制对于所有类型的蛋白质而言并不统一,但与它们各自的生物学功能相关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号