利用1H-13C交叉极化魔角自旋固体核磁共振探测低亲和底物与膜嵌入转运蛋白的接触。

Q3 Biochemistry, Genetics and Molecular Biology
Molecular Membrane Biology Pub Date : 2013-03-01 Epub Date: 2012-11-23 DOI:10.3109/09687688.2012.743193
Simon G Patching, Peter J F Henderson, David J Sharples, David A Middleton
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引用次数: 10

摘要

固体核磁共振结合样品氘化用于探测低亲和力底物d-葡萄糖与其在大肠杆菌糖转运蛋白GalP中的结合位点的接近程度。将扩增GalP表达的大肠杆菌内膜样品与D-[(13)C(6)]葡萄糖在D(2)O中孵育,底物的(13)C核磁共振信号在二维偶极辅助旋转共振(DARR)光谱中分配。这些信号被证实代表了与GalP结合的d -葡萄糖,因为在底物被抑制剂forskolin从特定位点移位后,这些峰被消除了。溶液中D-[(13)C(6)]葡萄糖的(13)C化学位移值与与GalP结合的配体的(13)C化学位移值有一定的差异,在C1和C2位置上的差异最为明显,特别是在α-异头体的C1位置上。(13)测定了悬浮在D(2)O中的GalP膜中D-[(13)C(6)]葡萄糖和D-[(2)H(7), (13)C(6)]葡萄糖的C1和C2的C交叉极化形成。氘化底物的积累曲线反映了蛋白质与完全氘化底物之间的分子间(1)H-(13)C相互作用;信号积累表明α-异位体比β-异位体更靠近蛋白质结合位点,这与α-异位体相对较高的信号强度和二维相关光谱中更明显的化学位移变化相一致。这些结果证明了固体核磁共振结合样品氘化用于绘制低亲和力配体与膜蛋白的结合界面的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probing the contacts of a low-affinity substrate with a membrane-embedded transport protein using 1H-13C cross-polarisation magic-angle spinning solid-state NMR.

Solid-state NMR combined with sample deuteration was used to probe the proximity of the low-affinity substrate D-glucose to its binding site within the Escherichia coli sugar transport protein GalP. Samples of E. coli inner membranes with amplified expression of GalP were incubated in D(2)O with D-[(13)C(6)]glucose and (13)C NMR signals from the substrate were assigned in two-dimensional dipolar-assisted rotational resonance (DARR) spectra. The signals were confirmed as representing D-glucose bound to GalP as the peaks were abolished after the substrate was displaced from the specific site with the inhibitor forskolin. The (13)C chemical shift values for D-[(13)C(6)]glucose in solution revealed some differences compared to those for ligand bound to GalP, the differences being most pronounced for positions C1 and C2, and especially for C1 in the α-anomer. (13)C cross-polarization build-up was measured for C1 and C2 of D-[(13)C(6)]glucose and D-[(2)H(7), (13)C(6)]glucose in GalP membranes suspended in D(2)O. The build-up curves for the deuterated substrate reflect intermolecular (1)H-(13)C interactions between the protein and the fully deuterated substrate; the signal build-up suggests that the α-anomer is situated closer to the protein binding site than is the β-anomer, consistent with its relatively high signal intensities and more pronounced chemical shift changes in the 2D-correlation spectra. These results demonstrate the utility of solid-state NMR combined with sample deuteration for mapping the binding interface of low affinity ligands with membrane proteins.

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来源期刊
Molecular Membrane Biology
Molecular Membrane Biology 生物-生化与分子生物学
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Cessation. Molecular Membrane Biology provides a forum for high quality research that serves to advance knowledge in molecular aspects of biological membrane structure and function. The journal welcomes submissions of original research papers and reviews in the following areas: • Membrane receptors and signalling • Membrane transporters, pores and channels • Synthesis and structure of membrane proteins • Membrane translocation and targeting • Lipid organisation and asymmetry • Model membranes • Membrane trafficking • Cytoskeletal and extracellular membrane interactions • Cell adhesion and intercellular interactions • Molecular dynamics and molecular modelling of membranes. • Antimicrobial peptides.
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