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Orphan spin operators enable the acquisition of multiple 2D and 3D magic angle spinning solid-state NMR spectra

机译:孤子自旋算子可获取多个2D和3D幻角旋转固态NMR光谱

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摘要

We propose a general method that enables the acquisition of multiple 2D and 3D solid-state NMR spectra for U-13C, 15N-labeled proteins. This method, called MEIOSIS (Multiple ExperIments via Orphan SpIn operatorS), makes it possible to detect four coherence transfer pathways simultaneously, utilizing orphan (i.e., neglected) spin operators of nuclear spin polarization generated during 15N-13C cross polarization (CP). In the MEIOSIS experiments, two phase-encoded free-induction decays are decoded into independent nuclear polarization pathways using Hadamard transformations. As a proof of principle, we show the acquisition of multiple 2D and 3D spectra of U-13C, 15N-labeled microcrystalline ubiquitin. Hadamard decoding of CP coherences into multiple independent spin operators is a new concept in solid-state NMR and is extendable to many other multidimensional experiments. The MEIOSIS method will increase the throughput of solid-state NMR techniques for microcrystalline proteins, membrane proteins, and protein fibrils.
机译:我们提出了一种通用方法,该方法能够获取U- 13 C, 15 N标记的蛋白质的多个2D和3D固态NMR光谱。这种方法称为MEIOSIS(通过孤子SpIn算子进行多次实验),利用在 15 N-期间产生的核自旋极化的孤子(即被忽略)自旋算子,可以同时检测四个相干传递路径。 13 C交叉极化(CP)。在MEIOSIS实验中,使用Hadamard变换将两个相位编码的自由感应衰变解码为独立的核极化途径。作为原理的证明,我们显示了U- 13 C, 15 N标记的微晶泛素的多个2D和3D光谱的采集。 Hadamard将CP相干解码为多个独立的自旋算子是固态NMR中的一个新概念,并且可以扩展到许多其他多维实验。 MEIOSIS方法将提高微晶蛋白质,膜蛋白质和蛋白质原纤维的固态NMR技术的通量。

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