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对HIV-1 gp120中CD4结合诱导的构象变化的原子水平洞察。

Atomic insight into the CD4 binding-induced conformational changes in HIV-1 gp120.

作者信息

Hsu Shang-Te D, Bonvin Alexandre M J J

机构信息

Bijvoet Center for Biomolecular Research, Utrecht University, Utrecht, The Netherlands.

出版信息

Proteins. 2004 May 15;55(3):582-93. doi: 10.1002/prot.20061.

Abstract

The entry of HIV-1 into a target cell requires gp120 and receptor CD4 as well as coreceptor CCR5/CXCR4 recognition events associated with conformational changes of the involved proteins. The binding of CD4 to gp120 is the initiation step of the whole process involving structural rearrangements that are crucial for subsequent pathways. Despite the wealth of knowledge about the gp120/CD4 interactions, details of the conformational changes occurring at this stage remain elusive. We have performed molecular dynamics simulations in explicit solvent based on the gp120/CD4/CD4i crystal structure in conjunction with modeled V3 and V4 loops to gain insight into the dynamics of the binding process. Three differentiated interaction modes between CD4 and gp120 were found, which involve electrostatics, hydrogen bond and van der Waals networks. A "binding funnel" model is proposed based on the dynamical nature of the binding interface together with a CD4-attraction gradient centered in gp120 at the CD4-Phe43-binding cavity. Distinct dynamical behaviors of free and CD4-bound gp120 were monitored, which likely represent the ground and pre-fusogenic states, respectively. The transition between these states revealed concerted motions in gp120 leading to: i) loop contractions around the CD4-Phe43-insertion cavity; ii) stabilization of the four-stranded "bridging sheet" structure; and iii) translocation and clustering of the V3 loop and the bridging sheet leading to the formation of the coreceptor binding site. Our results provide new insight into the dynamic of the underlying molecular recognition mechanism that complements the biochemical and structural studies.

摘要

HIV-1进入靶细胞需要gp120与受体CD4以及共受体CCR5/CXCR4的识别事件,这些事件与相关蛋白的构象变化有关。CD4与gp120的结合是整个过程的起始步骤,涉及对后续途径至关重要的结构重排。尽管对gp120/CD4相互作用已有丰富的了解,但在此阶段发生的构象变化细节仍不清楚。我们基于gp120/CD4/CD4i晶体结构并结合建模的V3和V4环在显式溶剂中进行了分子动力学模拟,以深入了解结合过程的动力学。发现了CD4与gp120之间三种不同的相互作用模式,包括静电、氢键和范德华网络。基于结合界面的动态性质以及以gp120中CD4-Phe43结合腔为中心的CD4吸引梯度,提出了一个“结合漏斗”模型。监测了游离和CD4结合的gp120的不同动态行为,它们可能分别代表基态和融合前状态。这些状态之间的转变揭示了gp120中的协同运动,导致:i)围绕CD4-Phe43插入腔的环收缩;ii)四链“桥接片”结构的稳定;iii)V3环和桥接片的易位和聚集,导致共受体结合位点的形成。我们的结果为潜在分子识别机制的动力学提供了新的见解,补充了生化和结构研究。

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