首页> 外文期刊>Journal of Molecular Biology >SOLUTION STRUCTURE OF OMEGA-CONOTOXIN MVIIC, A HIGH AFFINITY LIGAND OF P-TYPE CALCIUM CHANNELS, USING H-1 NMR SPECTROSCOPY AND COMPLETE RELAXATION MATRIX ANALYSIS
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SOLUTION STRUCTURE OF OMEGA-CONOTOXIN MVIIC, A HIGH AFFINITY LIGAND OF P-TYPE CALCIUM CHANNELS, USING H-1 NMR SPECTROSCOPY AND COMPLETE RELAXATION MATRIX ANALYSIS

机译:使用H-1 NMR光谱和完全弛豫矩阵分析的P型钙通道的高亲和力配体OMECON-CONOXOXIN MVIIC的溶液结构

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摘要

We have determined the solution structure of the omega-conotoxin MVIIC from Conus magnus by H-1 NMR. This conopeptide preferentially blocks P and Q type Ca2+ currents by binding with high affinity to voltage-sensitive Ca2+ channels in neurons. This 26 residue peptide with three disulfide bonds was chemically synthesized and refolded for NMR structural studies. The H-1 NMR NOESY spectrum of this peptide was completely assigned, with stereospecific assignments made for 12 of the beta prochiral centers. Complete relaxation matrix analysis using MARDIGRAS was used to obtain initial interproton distances from peak intensities. The correlation time necessary for these calculations was determined by measuring C-13 relaxation times using inversely detected natural abundance spectra. Distances were input to DG, which provided 15 starting structures which were then subjected to restrained molecular dynamics calculations using SANDER with the AMBER 91 force field in vacuo. H-1-H-1 vicinal coupling constants were obtained using a combination of line fitting of both E. COSY and NOESY spectra and used to generate angle restraints that were included explicitly in the restrained molecular dynamics calculations. The final set of the 15 best structures had a backbone rmsd of 0.84 Angstrom. The ensemble R(1/6) factor calculated by CORMA for the final 15 structures was 11%. The final structure consists of an anti-parallel, triple-stranded beta-sheet, with four turns. In spite of significant differences in amino acid sequence and affinities for calcium channel subtypes, the backbone structure of omega-conotoxin MVIIC is very similar to the previously reported structure of omega-conotoxin GVIA. [References: 93]
机译:我们已经通过H-1 NMR确定了来自大锥虫的ω-芋螺毒素MVIIC的溶液结构。该肽对神经元中的电压敏感Ca2 +通道具有高亲和力,从而优先阻断P和Q型Ca2 +电流。化学合成具有26个残基的带有三个二硫键的肽,并将其折叠以进行NMR结构研究。该肽的H-1 NMR NOESY光谱已完全指定,对12个β前手性中心进行了立体定向分配。使用MARDIGRAS的完整弛豫矩阵分析可从峰强度获得初始质子距离。这些计算所需的相关时间是通过使用反向检测的自然丰度谱测量C-13弛豫时间来确定的。将距离输入到DG,它提供了15个起始结构,然后使用SANDER和真空AMBER 91力场对15个起始结构进行了受限的分子动力学计算。使用E.COZY和NOESY光谱的线拟合组合获得H-1-H-1邻域耦合常数,并用于生成角度约束,该约束已明确包含在受约束的分子动力学计算中。 15个最佳结构的最后一组的主干均方根值为0.84埃。由CORMA计算得出的最后15个结构的整体R(1/6)因子为11%。最终结构由一个具有四个匝的反平行三链β-折叠组成。尽管钙通道亚型的氨基酸序列和亲和力存在显着差异,但ω-芋螺毒素MVIIC的骨架结构与先前报道的ω-芋螺毒素GVIA的结构非常相似。 [参考:93]

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