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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Local Ordering at Mobile Sites in Proteins from Nuclear Magnetic Resonance Relaxation: The Role of Site Symmetry
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Local Ordering at Mobile Sites in Proteins from Nuclear Magnetic Resonance Relaxation: The Role of Site Symmetry

机译:蛋白质从核磁共振弛豫中的移动位点的本地排序:站点对称的作用。

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Restricted motions in proteins (e.g., N-H bond dynamics) are studied effectively with NMR. By analogy with restricted motions in liquid crystals (LC), the local ordering has in the past been primarily represented by potentials comprising the L = 2, vertical bar K vertical bar = 0, 2 spherical harmonics. However, probes dissolved in LCs experience nonpolar ordering, often referred to as alignment, while protein-anchored probes experience polar ordering, often referred to as orientation. In this study we investigate the role of local (site) symmetry in the context of the polarity of the local ordering. We find that potentials comprising , the L = 1, vertical bar K vertical bar = 0, 1 spherical harmonics represent adequately polar ordering. It is useful to characterize potential symmetry in terms of the irreducible representations of D-2h point group, which is already implicit in the definition of the rotational diffusion tensor. Thus, the relevant rhombic L = 1 potentials have B-1u and B(3)u symmetry whereas the relevant rhombic L = 2 potentials have A(g) symmetry. A comprehensive scheme where local potentials and corresponding probability density functions (PDFs) are represented in Cartesian and spherical coordinates clarifies how they are affected by polar and nonpolar ordering. The Cartesian coordinates are chosen so that the principal axis of polar axial PDF is pointing along the z-axis, whereas the principal axis of the nonpolar axial PDF is pointing along +/- z. Two-term axial potentials with 1 <= L <= 3 exhibit substantial diversity; they are expected to be useful in NMR-relaxation-data-fitting. It is shown how potential coefficients are reflected in the experimental order parameters. The comprehensive scheme representing local potentials and PDFs is exemplified for the L = 2 case using experimental data from N-15-labeled plexin-B1 and thioredoxin, H-2-, and C-13-labeled benzenehexa-n-alkanoates, and nitroxide-labeled T4 lysozyme. Future prospects for improved ordering analysis based on combined atomistic and mesoscopic approaches are delineated.
机译:利用NMR有效地研究了蛋白质中的受限运动(例如N-H键动力学)。通过与液晶(LC)中的受限运动进行类比,过去,局部排序主要由包含L = 2,垂直线K垂直线= 0、2个球谐函数的电势表示。但是,溶解在LC中的探针会经历非极性排序(通常称为对齐),而蛋白质锚定的探针会经历极性排序(通常称为定向)。在这项研究中,我们调查了局部(位置)对称在局部有序极性的背景下的作用。我们发现,包括的电势L = 1,垂直线K垂直线= 0,1个球谐函数表示足够的极性有序。根据D-2h点组的不可约表示来表征潜在的对称性是有用的,这已经隐含在旋转扩散张量的定义中。因此,相关菱形L = 1势具有B-1u和B(3)u对称性,而相关菱形L = 2势具有A(g)对称性。笛卡尔坐标系和球形坐标表示局部势和相应的概率密度函数(PDF)的综合方案阐明了极性和非极性排序如何影响它们。选择笛卡尔坐标,以使极轴PDF的主轴指向z轴,而非极轴PDF的主轴指向+/- z。 1 <= L <= 3的二项轴向势表现出很大的多样性;它们有望在NMR松弛数据拟合中有用。它显示了潜在系数如何在实验顺序参数中得到反映。使用来自N-15标记的plexin-B1和硫氧还蛋白,H-2-和C-13标记的苯六-正链烷酸酯和一氧化氮的实验数据,对L = 2例例举了代表局部电势和PDF的综合方案。标记的T4溶菌酶。描绘了改进的基于原子和介观方法相结合的有序分析的前景。

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