Pandey Saurabh Kumar, Řeha David, Zayats Vasilina, Melichercik Milan, Carey Jannette, Ettrich Rüdiger
Institute of Nanobiology and Structural Biology, Global Change Research Center, Academy of Sciences of the Czech Republic, Zamek 136, CZ-373 33, Nove Hrady, Czech Republic.
J Mol Model. 2014 Jul;20(7):2330. doi: 10.1007/s00894-014-2330-5. Epub 2014 Jun 21.
Arginine repressor of E. coli is a multifunctional hexameric protein that provides feedback regulation of arginine metabolism upon activation by the negatively cooperative binding of L-arginine. Interpretation of this complex system requires an understanding of the protein's conformational landscape. The ~50 kDa hexameric C-terminal domain was studied by 100 ns molecular dynamics simulations in the presence and absence of the six L-arg ligands that bind at the trimer-trimer interface. A rotational shift between trimers followed by rotational oscillation occurs in the production phase of the simulations only when L-arg is absent. Analysis of the system reveals that the degree of rotation is correlated with the number of hydrogen bonds across the trimer interface. The trajectory presents frames with one or more apparently open binding sites into which one L-arg could be docked successfully in three different instances, indicating that a binding-competent state of the system is occasionally sampled. Simulations of the resulting singly-liganded systems reveal for the first time that the binding of one L-arg results in a holoprotein-like conformational distribution.
大肠杆菌的精氨酸阻遏物是一种多功能六聚体蛋白,通过L-精氨酸的负协同结合激活后,对精氨酸代谢提供反馈调节。对这个复杂系统的解释需要了解该蛋白的构象格局。在存在和不存在结合于三聚体-三聚体界面的六个L-精氨酸配体的情况下,通过100纳秒的分子动力学模拟研究了约50 kDa的六聚体C末端结构域。仅在不存在L-精氨酸时,模拟的生产阶段才会出现三聚体之间的旋转位移,随后是旋转振荡。对该系统的分析表明,旋转程度与三聚体界面上的氢键数量相关。轨迹呈现出具有一个或多个明显开放结合位点的帧,在三个不同实例中,一个L-精氨酸可以成功对接至其中,这表明系统偶尔会采样到具有结合能力的状态。对所得单配体系统的模拟首次揭示,一个L-精氨酸的结合会导致类似全蛋白的构象分布。