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使用时间平均J耦合常数约束进行结构优化。

Structure refinement using time-averaged J-coupling constant restraints.

作者信息

Torda A E, Brunne R M, Huber T, Kessler H, van Gunsteren W F

机构信息

Physical Chemistry (Computational Chemistry), ETH Zentrum, Zürich, Switzerland.

出版信息

J Biomol NMR. 1993 Jan;3(1):55-66. doi: 10.1007/BF00242475.

Abstract

We describe a new penalty function for use in restrained molecular dynamics simulations which allows experimental J-coupling information to be enforced as a time-averaged, rather than instantaneous, quantity. The pseudo-energy term has been formulated in terms of a calculated J value (a measured quantity) rather than the relevant dihedral angle (a derived quantity). This accounts for the distinct non-linearity of the coupling constant with respect to either Cartesian coordinates or dihedral angles. Example simulations of the cyclic decapeptide antamanide show the procedure's ability to enforce experimental restraints while exploring a large region of conformational space and producing a relatively small disturbance of the physical force field.

摘要

我们描述了一种用于受限分子动力学模拟的新罚函数,它允许将实验测得的J耦合信息作为时间平均量而非瞬时量来实施。伪能量项是根据计算得到的J值(一个测量量)而非相关的二面角(一个导出量)来制定的。这解释了耦合常数相对于笛卡尔坐标或二面角的明显非线性。环十肽抗毒蕈环肽的示例模拟表明,该程序能够在探索构象空间的大区域并对物理力场产生相对较小干扰的同时实施实验约束。

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