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首页> 外文期刊>Journal of magnetic resonance >General expressions for R-1 rho relaxation for N-site chemical exchange and the special case of linear chains
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General expressions for R-1 rho relaxation for N-site chemical exchange and the special case of linear chains

机译:用于N场化学交换的R-1 Rho松弛的一般表达和线性链的特殊情况

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摘要

Exploration of dynamic processes in proteins and nucleic acids by spin-locking NMR experiments has been facilitated by the development of theoretical expressions for the R-1p relaxation rate constant covering a variety of kinetic situations. Herein, we present a generalized approximation to the chemical exchange, R-ex, component of R-1p for arbitrary kinetic schemes, assuming the presence of a dominant major site population, derived from the negative reciprocal trace of the inverse Bloch-McConnell evolution matrix. This approximation is equivalent to first-order truncation of the characteristic polynomial derived from the Bloch-McConnell evolution matrix. For three- and four-site chemical exchange, the first-order approximations are sufficient to distinguish different kinetic schemes. We also introduce an approach to calculate R-1p for linear N-site schemes, using the matrix determinant lemma to reduce the corresponding 3N x 3N Bloch-McConnell evolution matrix to a 3 x 3 matrix. The first- and second order-expansions of the determinant of this 3 x 3 matrix are closely related to previously derived equations for two-site exchange. The second-order approximations for linear N-site schemes can be used to obtain more accurate approximations for non-linear N-site schemes, such as triangular three-site or star four-site topologies. The expressions presented herein provide powerful means for the estimation of Rex contributions for both low (CEST-limit) and high (R-1p-limit) radiofrequency field strengths, provided that the population of one state is dominant. The general nature of the new expressions allows for consideration of complex kinetic situations in the analysis of NMR spin relaxation data. (C) 2016 Elsevier Inc. All rights reserved.
机译:通过旋转锁定NMR实验探讨蛋白质和核酸中动态过程的探索通过开发覆盖各种动力学情况的R-1P弛豫速率恒定的理论表达。在此,我们向化学交换,R-EX,R-1p的组分的广义近似,用于任意动力学方案的R-1p的组分,假设存在从逆波形 - 麦康纳进化矩阵的负互易迹线的主要互易迹线衍生。该近似相当于从Bloch-McConnell演化矩阵导出的特征多项式的一阶截短。对于三个和四个站点化学交换,一阶近似足以区分不同的动力学方案。我们还介绍一种方法来计算用于线性N站点方案的R-1P,使用矩阵确定性LEMMA将相应的3N X 3N Bloch-McConnell演化矩阵降低到3×3矩阵。该3×3矩阵的决定因素的第一和第二顺序扩展与先前导出的双站交交换的方程密切相关。线性N站点方案的二阶近似可用于获得非线性N位方案的更准确的近似,例如三角形三场或星形四站点拓扑。这里给出的表达提供了强大的方法,用于估计低(Cest-Limit)和高(R-1P-Limit)射频场强的REX贡献,条件是一种州的群体是显性的。新表达式的一般性质允许考虑在核磁共振分析旋转弛豫数据分析中的复杂动力学情况。 (c)2016年Elsevier Inc.保留所有权利。

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