首页> 外文期刊>Nature structural biology >DEFINING LONG RANGE ORDER IN NMR STRUCTURE DETERMINATION FROM THE DEPENDENCE OF HETERONUCLEAR RELAXATION TIMES ON ROTATIONAL DIFFUSION ANISOTROPY
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DEFINING LONG RANGE ORDER IN NMR STRUCTURE DETERMINATION FROM THE DEPENDENCE OF HETERONUCLEAR RELAXATION TIMES ON ROTATIONAL DIFFUSION ANISOTROPY

机译:从核扩散时间与旋转扩散各向异性的相关性确定NMR结构中的长范围有序

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摘要

Structure determination by NMR presently relies on short range restraints between atoms in close spatial proximity, principally in the form of short (< 5 Angstrom) interproton distances. In the case of modular or multidomain proteins and linear nucleic acids, the density of short interproton distance contacts between structural elements far apart in the sequence may be insufficient to define their relative orientations. In this paper we show how the dependence of heteronuclear longitudinal and transverse relaxation times on the rotational diffusion anisotropy of non-spherical molecules can be readily used to directly provide restraints for simulated annealing structure refinement that characterize long range order a priori. The method is demonstrated using the N-terminal domain of Enzyme I, a protein of 259 residues comprising two distinct domains with a diffusion anisotropy (D-parallel to/D-perpendicular to of similar to 2. [References: 30]
机译:目前,通过NMR确定结构依赖于空间紧密接近的原子之间的短距离限制,主要形式是短(<5埃)质子距离。在模块化或多结构域蛋白质和线性核酸的情况下,序列中相距较远的结构元件之间的质子间短距离接触的密度可能不足以定义其相对方向。在本文中,我们显示了异核纵向和横向弛豫时间对非球形分子旋转扩散各向异性的依赖性如何可以轻松地直接用于为模拟退火结构的细化提供先验约束,这些细化是先验特征。使用酶I的N末端结构域证明了该方法,该酶是259个残基的蛋白质,包含两个不同的结构域,具有扩散各向异性(D平行于/ D垂直于,近似于2)。[参考文献:30]

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