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利用随机边界分子动力学和核磁共振距离约束对泛素F45W变体进行局部溶液结构优化

Localized solution structure refinement of an F45W variant of ubiquitin using stochastic boundary molecular dynamics and NMR distance restraints.

作者信息

Laub P B, Khorasanizadeh S, Roder H

机构信息

Institute for Cancer Research, Fox Chase Cancer Center, Philadelphia, Pennsylvania 19111, USA.

出版信息

Protein Sci. 1995 May;4(5):973-82. doi: 10.1002/pro.5560040517.

DOI:10.1002/pro.5560040517
PMID:7663353
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2143128/
Abstract

The local structure within an 8-A radius around residue 45 of a recombinant F45W variant of human ubiquitin has been determined using 67 interproton distance restraints measured by two-dimensional proton NMR. Proton chemical shift evidence indicates that structural perturbations due to the F45W mutation are minimal and limited to the immediate vicinity of the site of mutation. Simulated annealing implemented with stochastic boundary molecular dynamics was applied to refine the structure of Trp 45 and 10 neighboring residues. The stochastic boundary method allowed the entire protein to be reassembled from the refined coordinates and the outlying unrefined coordinates with little distortion at the boundary. Refinement began with four low-energy indole ring orientations of F45W-substituted wild-type (WT) ubiquitin crystal coordinates. Distance restraints were derived from mostly long-range NOE cross peaks with 51 restraints involving the Trp 45 indole ring. Tandem refinements of 64 structures were done using either (1) upper and lower bounds derived from qualitative inspection of NOE crosspeak intensities or (2) quantitative analysis of cross-peak heights using the program MARDIGRAS. Though similar to those based on qualitative restraint, structures obtained using quantitative NOE analysis were superior in terms of precision and accuracy as measured by back-calculated sixth-root R factors. The six-membered portion of the indole ring is nearly coincident with the phenyl ring of the WT and the indole NH is exposed to solvent. Accommodation of the larger ring is accompanied by small perturbations in the backbone and a 120 degrees rotation of the chi 2 dihedral angle of Leu 50.

摘要

利用二维质子核磁共振测量的67个质子间距离约束,确定了人泛素重组F45W变体45位残基周围8埃半径内的局部结构。质子化学位移证据表明,F45W突变引起的结构扰动最小,且仅限于突变位点的紧邻区域。采用随机边界分子动力学进行模拟退火,以优化Trp 45及其10个相邻残基的结构。随机边界方法允许从优化坐标和外围未优化坐标重新组装整个蛋白质,在边界处几乎没有变形。优化从F45W取代的野生型(WT)泛素晶体坐标的四个低能量吲哚环取向开始。距离约束主要来自长程NOE交叉峰,其中51个约束涉及Trp 45吲哚环。使用(1)通过对NOE交叉峰强度进行定性检查得出的上下限,或(2)使用MARDIGRAS程序对交叉峰高度进行定量分析,对64个结构进行串联优化。尽管与基于定性约束的结构相似,但使用定量NOE分析获得的结构在通过反算六次根R因子测量的精度和准确性方面更优。吲哚环的六元部分几乎与WT的苯环重合,吲哚NH暴露于溶剂中。较大环的容纳伴随着主链的小扰动和Leu 50的χ2二面角的120度旋转。

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