Chaudhry Charu, Horwich Arthur L, Brunger Axel T, Adams Paul D
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520, USA.
J Mol Biol. 2004 Sep 3;342(1):229-45. doi: 10.1016/j.jmb.2004.07.015.
Large rigid-body domain movements are critical to GroEL-mediated protein folding, especially apical domain elevation and twist associated with the formation of a folding chamber upon binding ATP and co-chaperonin GroES. Here, we have modeled the anisotropic displacements of GroEL domains from various crystallized states, unliganded GroEL, ATPgammaS-bound, ADP-AlFx/GroES-bound, and ADP/GroES bound, using translation-libration-screw (TLS) analysis. Remarkably, the TLS results show that the inherent motions of unliganded GroEL, a polypeptide-accepting state, are biased along the transition pathway that leads to the folding-active state. In the ADP-AlFx/GroES-bound folding-active state the dynamic modes of the apical domains become reoriented and coupled to the motions of bound GroES. The ADP/GroES complex exhibits these same motions, but they are increased in magnitude, potentially reflecting the decreased stability of the complex after nucleotide hydrolysis. Our results have allowed the visualization of the anisotropic molecular motions that link the static conformations previously observed by X-ray crystallography. Application of the same analyses to other macromolecules where rigid body motions occur may give insight into the large scale dynamics critical for function and thus has the potential to extend our fundamental understanding of molecular machines.
大刚体结构域运动对于GroEL介导的蛋白质折叠至关重要,尤其是与结合ATP和伴侣蛋白GroES时形成折叠腔相关的顶端结构域升高和扭转。在这里,我们使用平移-振动-螺旋(TLS)分析对来自各种结晶状态的GroEL结构域的各向异性位移进行了建模,这些状态包括未结合配体的GroEL、结合ATPγS的、结合ADP-AlFx/GroES的以及结合ADP/GroES的。值得注意的是,TLS结果表明,未结合配体的GroEL(一种多肽接受状态)的固有运动沿着通向折叠活性状态的过渡途径存在偏向性。在结合ADP-AlFx/GroES的折叠活性状态下,顶端结构域的动态模式重新定向并与结合的GroES的运动耦合。ADP/GroES复合物表现出相同的运动,但幅度增加,这可能反映了核苷酸水解后复合物稳定性的降低。我们的结果使得能够可视化连接先前通过X射线晶体学观察到的静态构象的各向异性分子运动。将相同的分析应用于发生刚体运动的其他大分子可能会深入了解对功能至关重要的大规模动力学,因此有可能扩展我们对分子机器的基本理解。