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首页> 外文期刊>Journal of Molecular Biology >Investigation of the mechanism of domain closure in citrate synthase bymolecular dynamics simulation
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Investigation of the mechanism of domain closure in citrate synthase bymolecular dynamics simulation

机译:柠檬酸合酶结构域封闭的分子动力学模拟研究

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摘要

Six, 2 ns molecular dynamics simulations have been performed on the homodimeric enzyme citrate synthase. In three, both monomers were started from the open, unliganded X-ray conformation. In the remaining three, both monomers started from a closed, liganded X-ray conformation, with the ligands removed. Projecting the motion from the simulations onto the experimental domain motion revealed that the free-energy profile is rather flat around the open conformation, with steep sides. The most closed conformations correspond to hinge-bending angles of 12-14 degrees compared to the 20 degrees that occurs upon the binding of oxaloacetate. It is also found that the open, unliganded X-ray conformation is situated at the edge of the steep rise in free energy, although conformations that are about 5 degrees more open were sampled. A rigid-body essential dynamics analysis of the combined open trajectories has shown that domain motions in the direction of the closed X-ray conformation are compatible with the natural domain motion of the unliganded protein, which has just two main degrees of freedom. The simulations starting from the closed conformation suggest a free-energy profile with a small barrier in going from the closed to open conformation. A combined essential dynamics and hinge-bending analysis of a trajectory that spontaneously converts from the closed to open state shows an almost exact correspondence to the experimental transition that occurs upon ligand binding. The simulations support the conclusion from an earlier analysis of the experimental transition that the beta -hairpin acts as a mechanical hinge by attaching the small domain to the large domain through a conserved main-chain hydrogen bond and salt-bridges, and allowing rotation to occur via its two flexible termini. The results point to a mechanism of domain closure in citrate synthase that has analogy to the process of closing a door.
机译:对同型二聚体柠檬酸合酶进行了6、2 ns的分子动力学模拟。在三个中,两种单体均从开放的未配位X射线构象开始。在其余的三个中,两种单体均从封闭的配位X射线构象开始,但配体被除去。将运动从模拟运动投影到实验域运动表明,自由能分布在开放构型周围相当平坦,具有陡峭的侧面。与草酰乙酸盐结合时出现的20度相比,最闭合的构型对应于12-14度的铰链弯曲角度。还发现开放的,未配位的X射线构象位于自由能急剧上升的边缘,尽管采样的构象大约开放了5度。对组合的开放轨迹进行的刚体基本动力学分析表明,在闭合X射线构象方向上的畴运动与未配体蛋白质的自然畴运动兼容,后者只有两个主要的自由度。从封闭构象开始的模拟表明,从封闭构象到开放构象的自由能分布具有较小的障碍。从关闭状态到打开状态自发转换的轨迹的基本动力学和铰链弯曲分析相结合,显示出与配体结合时发生的实验转变几乎完全一致。模拟支持对实验过渡的早期分析得出的结论,即β-发夹通过保守的主链氢键和盐桥将小结构域连接到大结构域,并允许旋转发生,从而充当机械铰链通过其两个灵活的终端。结果表明,柠檬酸盐合酶中的域关闭机制类似于关闭门的过程。

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