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Solid-state NMR spectroscopy of 18.5 kDa myelin basic protein reconstituted with lipid vesicles: Spectroscopic characterisation and spectral assignments of solvent-exposed protein fragments

机译:用脂质囊泡重构的18.5 kDa髓磷脂碱性蛋白的固态NMR光谱:溶剂暴露的蛋白质片段的光谱表征和光谱分配

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摘要

Myelin basic protein (MBP, 18.5 kDa isoform) is a peripheral membrane protein that is essential for maintaining the structural integrity of the multilamellar myelin sheath of the central nervous system. Reconstitution of the most abundant 18.5 kDa MBP isoform with lipid vesicles yields an aggregated assembly mimicking the protein’s natural environment, but which is not amenable to standard solution NMR spectroscopy. On the other hand, the mobility of MBP in such a system is variable, depends on the local strength of the protein–lipid interaction, and in general is of such a time scale that the dipolar interactions are averaged out. Here, we used a combination of solution and solid-state NMR (ssNMR) approaches: J-coupling-driven polarization transfers were combined with magic angle spinning and high-power decoupling to yield high-resolution spectra of the mobile fragments of 18.5 kDa murine MBP in membrane-associated form. To partially circumvent the problem of short transverse relaxation, we implemented three-dimensional constant-time correlation experiments (NCOCX, NCACX, CONCACX, and CAN(CO) CX) that were able to provide interresidue and intraresidue backbone correlations. These experiments resulted in partial spectral assignments for mobile fragments of the protein. Additional nuclear Overhauser effect spectroscopy (NOESY)-based experiments revealed that the mobile fragments were exposed to solvent and were likely located outside the lipid bilayer, or in its hydrophilic portion. Chemical shift index analysis showed that the fragments were largely disordered under these conditions. These combined approaches are applicable to ssNMR investigations of other peripheral membrane proteins reconstituted with lipids.
机译:髓磷脂碱性蛋白(MBP,18.5 kDa亚型)是一种外周膜蛋白,对于维持中枢神经系统多层髓鞘的结构完整性至关重要。用脂质囊泡重建最丰富的18.5 kDa MBP同工型,可产生模仿蛋白质天然环境的聚集装配,但不适用于标准溶液NMR光谱。另一方面,MBP在这样的系统中的迁移率是可变的,取决于蛋白质-脂质相互作用的局部强度,并且通常具有偶极相互作用被平均化的时间范围。在这里,我们使用溶液和固态NMR(ssNMR)方法的组合:J耦合驱动的极化转移与魔角旋转和高功率去耦结合,以产生18.5 kDa鼠类移动碎片的高分辨率光谱膜相关形式的MBP。为了部分规避较短的横向松弛问题,我们实施了三维恒定时间相关实验(NCOCX,NCACX,CONCACX和CAN(CO)CX),这些实验能够提供残基间和残基内骨架相关性。这些实验导致了蛋白质的移动片段的部分光谱分配。其他基于核Overhauser效应谱(NOESY)的实验表明,可移动的片段暴露于溶剂中,可能位于脂质双层的外部或亲水部分。化学位移指数分析表明,在这些条件下,片段大部分无序。这些组合的方法适用于用脂质重构的其他外周膜蛋白的ssNMR研究。

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