首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Three-dimensional structure of proteins determined by molecular dynamics with interproton distance restraints: application to crambin.
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Three-dimensional structure of proteins determined by molecular dynamics with interproton distance restraints: application to crambin.

机译:蛋白质的三维结构由分子动力学决定质子间距离受限制:应用于蛤c。

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摘要

Model calculations are performed to evaluate the utility of molecular dynamics with NMR interproton distance restraints for determining the three-dimensional structure of proteins. The system used for testing the method is the 1.5-A resolution crystal structure of crambin (a protein of 46 residues) from which a set of 240 approximate interproton distances of less than 4 A are derived. The convergence properties of the method are examined by using different dynamics protocols and starting from two initial structures; one is a completely extended beta-strand, and the other has residues 7-19 and 23-30 in the form of alpha-helices (as in the crystal structure) with the remaining residues in the form of extended beta-strands. In both cases global and local convergence to the correct final structure is achieved with rms atomic differences between the restrained dynamics structures and the crystal structure of 1.5-2.1 A for the backbone atoms and 2.1-2.8 A for all atoms; the averaged structure has backbone and all atom rms deviations of 1.3 and 1.9 A, respectively. Further, it is shown that a restrained dynamics structure with significantly larger deviations (i.e., 5.7 A for the backbone atoms) can be characterized as incorrect, independent of a knowledge of the crystal structure.
机译:进行模型计算以评估具有NMR质子距离约束的分子动力学在确定蛋白质三维结构中的效用。用于测试该方法的系统是crambin(46个残基的蛋白质)的1.5A分辨率晶体结构,可从该晶体结构中获得一组240个小于4 A的近似质子间距。通过使用不同的动力学协议并从两个初始结构开始检查该方法的收敛性质。一个是完全延伸的β链,另一个具有α螺旋形式的残基7-19和23-30(与晶体结构相同),其余的残基则是延伸的β链形式。在两种情况下,通过约束动力学结构和晶体结构之间的均方根原子差,主链原子为1.5-2.1 A,所有原子为2.1-2.8 A,可以实现全局和局部收敛到正确的最终结构。平均结构的主链和所有原子均方根偏差分别为1.3和1.9A。此外,还表明,与晶体结构的知识无关,具有明显较大偏差(即,骨架原子为5.7A)的受约束的动力学结构可以被表征为不正确的。

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