首页> 外文期刊>Protein Science: A Publication of the Protein Society >Chemical shift assignment of the transmembrane helices of DsbB, a 20-kDa integral membrane enzyme, by 3D magic-angle spinning NMR spectroscopy.
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Chemical shift assignment of the transmembrane helices of DsbB, a 20-kDa integral membrane enzyme, by 3D magic-angle spinning NMR spectroscopy.

机译:DsbB的跨膜螺旋的化学位移分配(一种20 kDa的整体膜酶)通过3D幻角旋转NMR光谱分析。

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摘要

The Escherichia coli inner membrane enzyme DsbB catalyzes disulfide bond formation in periplasmic proteins, by transferring electrons to ubiquinone from DsbA, which in turn directly oxidizes cysteines in substrate proteins. We have previously shown that DsbB can be prepared in a state that gives highly resolved magic-angle spinning (MAS) NMR spectra. Here we report sequential 13C and 15N chemical shift assignments for the majority of the residues in the transmembrane helices, achieved by three-dimensional (3D) correlation experiments on a uniformly 13C, 15N-labeled sample at 750-MHz 1H frequency. We also present a four-dimensional (4D) correlation spectrum, which confirms assignments in some highly congested regions of the 3D spectra. Overall, our results show the potential to assign larger membrane proteins using 3D and 4D correlation experiments and form the basis of further structural and dynamical studies of DsbB by MAS NMR.
机译:大肠杆菌内膜酶DsbB通过将电子从DsbA转移至泛醌,从而催化周质蛋白中的二硫键形成,后者又直接氧化了底物蛋白中的半胱氨酸。先前我们已经证明DsbB可以在可产生高度解析的魔角旋转(MAS)NMR光谱的状态下制备。在这里,我们报告了跨膜螺旋中大多数残基的连续13C和15N化学位移分配,这是通过在750 MHz 1H频率下对13C,15N标记均匀的样品进行三维(3D)相关实验而实现的。我们还提出了一个四维(4D)相关光谱,该光谱确认了3D光谱的某些高度拥挤区域中的分配。总的来说,我们的结果显示了使用3D和4D相关实验分配更大的膜蛋白的潜力,并为通过MAS NMR进一步研究DsbB的结构和动力学奠定了基础。

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