首页> 外文期刊>Journal of chemical theory and computation: JCTC >Encapsulation Influence on EPR Parameters of Spin-Labels: 2,2,6,6-Tetramethyl-4-methoxypiperidine-1-oxyl in Cucurbit[8]uril
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Encapsulation Influence on EPR Parameters of Spin-Labels: 2,2,6,6-Tetramethyl-4-methoxypiperidine-1-oxyl in Cucurbit[8]uril

机译:包裹对自旋标签的EPR参数的影响:葫芦丝[8] uril中的2,2,6,6-四甲基-4-甲氧基哌啶-1-氧基

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Encapsulation of a nitroxide spin label into a host cavity can prolong the lifetime of the spin label in biological tissues and other environments. Although such paramagnetic supramolecular complexes have been extensively studied experimentally, there is yet little understanding of the role of the encapsulation on the magnetic properties of the spin labels and their performance at the atomistic level. In this work, we approach this problem by modeling encapsulation induced changes of the magnetic properties of spin labels for a prototypical paramagnetic guest—host complex, 2,2,6,6-tetramethyl-4-methoxypiperidine-1-oxyl, enclosed in the hydrophobic cavity of cucurbit[8]uril, using state-of-the-art hybrid quantum mechanics/molecular mechanics methodology. The results allow a decomposition of the encapsulation shift of the electronic g-tensor and the nitrogen isotropic hypernne coupling constant of nitroxide radical into a set of distinct contributions associated with the host cavity confinement and with changes of the local solvent environment of the spin label upon encapsulation. It is found that the hydrophobic cavity of cucurbit [8] uril only weakly influences the electronic g-tensor of the 2,2,6,6-tetramethyl-4-methoxypiperidine- 1-oxyl but induces a significant encapsulation shift of the nitrogen hyperfine coupling constant. The latter is caused by the change of topology of the hydrogen bonding network and the nature of the hydrogen bonds around the spin label induced by the hydrophobic cavity of the inclusion host. This indirect effect is found to be more important than the direct influence of the cavity exerted on the radical. The ramification of this finding for the use of approximate methods for computing electron paramagnetic resonance spectra of spin labels and for designing optimal spin labels based on guest—host templates is discussed.
机译:将一氧化氮自旋标记物封装到宿主腔中可延长自旋标记物在生物组织和其他环境中的寿命。尽管已经对此类顺磁性超分子复合物进行了广泛的实验研究,但对包封对自旋标记物的磁性和在原子级的性能的作用了解甚少。在这项工作中,我们通过对典型顺磁性客体(主体复合物,2,2,6,6-四甲基-4-甲氧基哌啶-1-氧基)中自旋标签的磁性诱导的封装诱导变化进行建模来解决该问题。使用最新的混合量子力学/分子力学方法,对葫芦[8]尿素的疏水腔进行了研究。结果允许将电子g张量的封装位移和氮氧自由基的氮各向同性双正戊烯偶合常数分解为一组与主腔限制和自旋标记物的局部溶剂环境变化相关的独特贡献封装。发现葫芦[8]尿嘧啶的疏水腔仅微弱地影响2,2,6,6-四甲基-4-甲氧基哌啶-1-氧基的电子g张量,但会引起氮超微粒的明显包封位移耦合常数。后者是由于氢键网络拓扑结构的变化以及包含主体的疏水腔在自旋标记周围的氢键性质引起的。发现这种间接作用比腔对自由基的直接影响更为重要。讨论了此发现的后果,以使用近似方法来计算自旋标签的电子顺磁共振光谱以及基于来宾-宿主模板设计最佳自旋标签。

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