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固态 NMR 对中等幅度运动的选择性检测。

Selective Detection of Intermediate-Amplitude Motion by Solid-State NMR.

机构信息

Department of Chemistry, Massachusetts Institute of Technology, 170 Albany Street, Cambridge, Massachusetts 02139, United States.

出版信息

J Phys Chem B. 2024 Mar 14;128(10):2293-2303. doi: 10.1021/acs.jpcb.3c06839. Epub 2024 Feb 28.

Abstract

The coexistence of rigid and mobile molecules or molecular segments abounds in biomolecular assemblies. Examples include the carbohydrate-rich cell walls of plants and intrinsically disordered proteins that contain rigid β-sheet cores. In solid-state nuclear magnetic resonance (NMR) spectroscopy, dipolar polarization transfer experiments are well suited for detecting rigid components, whereas scalar-coupling experiments are well suited for detecting highly mobile components. However, few NMR methods are available to detect the segments that undergo intermediate-amplitude fast motion. Here, we introduce two NMR experiments, a two-dimensional -filtered CP-hCH correlation and a three-dimensional J-INADEQUATE CCH correlation, to observe this intermediate-amplitude motion. Both experiments involve H detection under fast magic-angle spinning (MAS). By combining H transverse relaxation () filters with dipolar polarization transfer, we suppress the signals of both highly rigid and highly mobile species, thus revealing the signals of intermediate mobile species. H detection under fast MAS is crucial for distinguishing the different motional amplitudes. We demonstrate these techniques on several plant cell wall samples and show that they allow the selective detection and resolution of certain hemicellulose and pectin signals, which are usually masked by the signals of the rigid cellulose and the highly dynamic pectins in purely dipolar and scalar NMR spectra.

摘要

刚性和可动分子或分子片段的共存在生物分子组装中很常见。例如,富含碳水化合物的植物细胞壁和含有刚性β-折叠核心的天然无序蛋白质。在固态核磁共振(NMR)光谱学中,偶极极化转移实验非常适合检测刚性成分,而标量耦合实验非常适合检测高度移动的成分。然而,很少有 NMR 方法可用于检测经历中等幅度快速运动的片段。在这里,我们引入了两种 NMR 实验,二维 - 过滤 CP-hCH 相关和三维 J-INADEQUATE CCH 相关,以观察这种中等幅度的运动。这两个实验都涉及在快速魔角旋转(MAS)下的 H 检测。通过将 H 横向弛豫()滤波器与偶极极化转移相结合,我们抑制了高度刚性和高度移动的物质的信号,从而揭示了中间移动物质的信号。在快速 MAS 下进行 H 检测对于区分不同的运动幅度至关重要。我们在几个植物细胞壁样品上演示了这些技术,并表明它们允许选择性检测和分辨某些半纤维素和果胶信号,这些信号在纯偶极和标量 NMR 谱中通常被刚性纤维素和高度动态果胶的信号掩盖。

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