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Evaluating the Uncertainty in Exchange Parameters Determined from Off-Resonance R1ρ Relaxation Dispersion for Systems in Fast Exchange

机译:在快速交换系统中根据非共振R1ρ弛豫色散确定交换参数的不确定性

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摘要

Spin relaxation in the rotating frame (R1ρ) is a powerful NMR technique for characterizing fast microsecond timescale exchange processes directed toward short-lived excited states in biomolecules. At the limit of fast exchange, only kex = k1 + k−1 and Φıx = pGpE(Δω)2 can be determined from R1ρ data limiting the ability to characterize the structure and energetics of the excited state conformation. Here, we use simulations to examine the uncertainty with which exchange parameters can be determined for two state systems in intermediate-to-fast exchange using off-resonance R1ρ relaxation dispersion. R1ρ data computed by solving the Bloch-McConnell equations reveals small but significant asymmetry with respect to offset (R1ρ(ΔΩ) ≠ R1ρ(−ΔΩ)), which is a hallmark of slow-to-intermediate exchange, even under conditions of fast exchange for free precession chemical exchange line broadening (kex/Δω > 10). A grid search analysis combined with bootstrap and Monte-Carlo based statistical approaches for estimating uncertainty in exchange parameters reveals that both the sign and magnitude of Δω can be determined at a useful level of uncertainty for systems in fast exchange (kex/Δω < 10) but that this depends on the uncertainty in the R1ρ data and requires a thorough examination of the multidimensional variation of χ2 as a function of exchange parameters. Results from simulations are complemented by analysis of experimental R1ρ data measured in three nucleic acid systems with exchange processes occurring on the slow (kex/Δω = 0.2; pE = ~ 0.7%), fast (kex/Δω = ~10–16; pE = ~13%) and very fast (kex = 39,000 s−1) chemical shift timescales.
机译:旋转框架中的自旋弛豫(R1ρ)是一种强大的NMR技术,用于表征针对生物分子中短寿命激发态的快速微秒级时标交换过程。在快速交换的极限上,只能从R1ρ数据确定kex = k1 + k-1和Φıx= pGpE(Δω) 2 ,这限制了表征激发态构象的结构和能量的能力。在这里,我们使用模拟来检查不确定性,可以使用非共振R1ρ弛豫色散在中到快速交换中确定两个状态系统的交换参数。通过求解Bloch-McConnell方程而计算出的R1ρ数据显示出相对于偏移的小而显着的不对称性(R1ρ(ΔΩ)≠R1ρ(-ΔΩ)),即使在快速交换条件下,这也是慢速中间交换的标志用于自由进动的化学交换线扩宽(kex /Δω> 10)。网格搜索分析与基于Bootstrap和基于蒙特卡洛的统计方法相结合以估计交换参数的不确定性表明,可以在快速交换系统的有用不确定性水平上确定Δω的正负号和幅度(kex /Δω<10)但这取决于R1ρ数据的不确定性,需要彻底检查χ 2 作为交换参数的函数的多维变化。通过对在三个核酸系统中测量的实验R1ρ数据进行分析,模拟结果得到了补充,交换过程发生在慢速(kex /Δω= 0.2; pE =〜0.7%),快速(kex /Δω=〜10-16; pE =〜13%)和非常快的(kex = 39,000 s -1 )化学位移时标。

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