首页> 外文期刊>Physical chemistry chemical physics: PCCP >Ligand induced change of β2 adrenergic receptor from active to inactive conformation and its implication for the closed/open state of the water channel: insight from molecular dynamics simulation, free energy calculation and Markov state model analysis
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Ligand induced change of β2 adrenergic receptor from active to inactive conformation and its implication for the closed/open state of the water channel: insight from molecular dynamics simulation, free energy calculation and Markov state model analysis

机译:配体诱导的β2肾上腺素受体从活性构象变为非活性构象的变化及其对水通道关闭/打开状态的暗示:从分子动力学模拟,自由能计算和马尔可夫状态模型分析获得的见解

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摘要

The reported crystal structures of β2 adrenergic receptor (β2AR) reveal that the open and closed states of the water channel are correlated with the inactive and active conformations of β2AR. However, more details about the process by which the water channel states are affected by the active to inactive conformational change of β2AR remain illusive. In this work, molecular dynamics simulations are performed to study the dynamical inactive and active conformational change of β2AR induced by inverse agonist ICI 118,551. Markov state model analysis and free energy calculation are employed to explore the open and close states of the water channel. The simulation results show that inverse agonist ICI 118,551 can induce water channel opening during the conformational transition of β2AR. Markov state model (MSM) analysis proves that the energy contour can be divided into seven states. States S1, S2 and S5, which represent the active conformation of β2AR, show that the water channel is in the closed state, while states S4 and S6, which correspond to the intermediate state conformation of β2AR, indicate the water channel opens gradually. State S7, which represents the inactive structure of β2AR, corresponds to the full open state of the water channel. The opening mechanism of the water channel is involved in the ligand-induced conformational change of β2AR. These results can provide useful information for understanding the opening mechanism of the water channel and will be useful for the rational design of potent inverse agonists of β2AR.
机译:报道的β2肾上腺素能受体(β2AR)的晶体结构表明,水通道的打开和关闭状态与β2AR的非活性和活性构象相关。然而,关于水通道状态受β2AR的有无构象变化影响的过程的更多细节仍然是虚假的。在这项工作中,进行分子动力学模拟以研究反向激动剂ICI 118,551诱导的β2AR的动力学失活和构象变化。马尔可夫状态模型分析和自由能计算被用来探索水通道的打开和关闭状态。仿真结果表明,反向激动剂ICI 118,551可以在β2AR的构象转变过程中诱导水通道的开放。马尔可夫状态模型(MSM)分析证明,能量轮廓可以分为七个状态。代表β2AR活性构象的状态S1,S2和S5表明水通道处于关闭状态,而对应于β2AR中间状态构形的状态S4和S6则表明水通道逐渐打开。代表β2AR非活动结构的状态S7对应于水通道的完全打开状态。水通道的开放机制与配体诱导的β2AR构象变化有关。这些结果可以为理解水通道的开放机理提供有用的信息,并且对β2AR有效的反向激动剂的合理设计是有用的。

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