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Comparative analysis of NMR chemical shift predictions for proteins in the solid phase

机译:固相蛋白质的NMR化学位移预测的比较分析

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摘要

A comparative analysis of nuclear chemical shift predictions of proteins in the solid state by rapid algorithms trained on and verified with solution-state NMR assignments is presented. The precision of predictions by four dedicated computer programs (SHIFTS, PROSHIFTS, SHIFTX and SPARTA) was found to be close to values obtained for proteins in solution. Correlation coefficients depend on the NMR nucleus (N, C', C{sup}α and C{sup}β) and on secondary structure (β-strand, random coil and α-helix), but also on the molecular environment (membrane-integral or not). The findings establish a quantitative basis for using chemical shift prediction programs for solid-state NMR applications. On the other hand, prediction inaccuracies identified for certain resonance kind, residue type, and molecular environment point to possible areas of methodological improvement.
机译:提出了一种对蛋白质进行固态化学核化学位移预测的比较分析,该算法通过在溶液状态NMR分配上训练并验证的快速算法进行。发现通过四个专用计算机程序(SHIFTS,PROSHIFTS,SHIFTX和SPARTA)的预测精度接近溶液中蛋白质的测量值。相关系数取决于NMR核(N,C',C {sup}α和C {sup}β)以及二级结构(β链,无规卷曲和α螺旋),还取决于分子环境(膜-是否为整数)。这些发现为将化学位移预测程序用于固态NMR应用奠定了定量基础。另一方面,对于某些共振类型,残基类型和分子环境所确定的预测不准确之处,则指出了方法学改进的可能领域。

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