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首页> 外文期刊>Biochemistry >Analysis of protein-carbohydrate interaction at the lower size limit of the protein part (15-mer peptide) by NMR spectroscopy, electrospray ionization mass spectrometry, and molecular modeling.
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Analysis of protein-carbohydrate interaction at the lower size limit of the protein part (15-mer peptide) by NMR spectroscopy, electrospray ionization mass spectrometry, and molecular modeling.

机译:通过NMR光谱,电喷雾电离质谱和分子建模分析蛋白质部分(15-聚体肽)下限下的蛋白质与碳水化合物的相互作用。

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摘要

Structural analysis of minimally sized lectins will offer insights into fundamentals of intermolecular recognition and potential for biomedical applications. We thus moved significantly beyond the natural limit of lectin size to determine the structure of synthetic mini-lectins in solution, their carbohydrate selectivity and the impact of ligand binding on their conformational behavior. Using three disaccharide (Thomsen-Friedenreich antigen; Gal beta 1,3GalNAc alpha 1,R)-binding pentadecapeptides without internal disulfide bridges as role models, we successfully tested a combined strategy with different techniques of NMR spectroscopy, electrospray ionization mass spectrometry, and molecular modeling. In solution, the peptides invariably displayed flexibility with rather limited restrictions, shown by NMR experiments including nearly complete resonance assignments and molecular dynamics simulations. The occurrence of aromaticonpolar amino acids in the sequence did not lead to formation of a hydrophobic core known from microbial chitinase modules. Selectivity of disaccharide binding was independently observed by mass spectrometry and NMR analysis. Specific ligand interaction yielded characteristic NMR signal alterations but failed to reduce conformational flexibility significantly. We have thereby proven effectiveness of our approach to analyze even low-affinity interactions (not restricted to carbohydrates as ligands). It will be useful to evaluate the impact of rational manipulation of lead peptide sequences.
机译:最小尺寸的凝集素的结构分析将提供分子间识别基础知识和生物医学应用潜力的见解。因此,我们大大超出了凝集素大小的自然极限,以确定溶液中合成的微型凝集素的结构,其碳水化合物的选择性以及配体结合对其构象行为的影响。使用三个不带有内部二硫键的二糖(Thomsen-Friedenreich抗原; Gal beta 1,3GalNAc alpha 1,R)结合的十五肽作为榜样,我们成功地测试了使用NMR光谱,电喷雾电离质谱和分子技术的组合策略造型。在溶液中,这些肽总是显示出具有相当有限限制的灵活性,这由NMR实验所显示,包括几乎完整的共振分配和分子动力学模拟。序列中芳族/非极性氨基酸的出现并未导致形成从微生物几丁质酶模块已知的疏水核心。通过质谱和NMR分析独立地观察到二糖结合的选择性。特定的配体相互作用产生特征性的NMR信号改变,但不能显着降低构象柔韧性。因此,我们证明了我们的方法即使分析低亲和力相互作用(不限于碳水化合物作为配体)的有效性。评估合理操作前导肽序列的影响将是有用的。

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