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通过饱和转移差 NMR 绘制多粘菌素 B 与脂多糖的残基特异性接触图谱:对破坏外膜和中和内毒素的深入了解。

Mapping residue-specific contacts of polymyxin B with lipopolysaccharide by saturation transfer difference NMR: insights into outer-membrane disruption and endotoxin neutralization.

机构信息

Biomolecular NMR and Drug Discovery Laboratory, School of Biological Sciences, Division of Structural and Computational Biology, Nanyang Technological University, Singapore 637551.

出版信息

Biopolymers. 2011;96(3):273-87. doi: 10.1002/bip.21530.

Abstract

High-resolution interactions studies of molecules with lipopolysaccharide (LPS) or endotoxin are important for health, diseases and environment. LPS is the major constituent of the outer layer of the outer membrane of the gram-negative bacteria. LPS provides an efficient barrier against permeation of variety of compounds including antibacterial agents and antimicrobial peptides. In the intensive care units, LPS is known for the fatal septic shock syndromes. Because of LPS toxicity, high affinity LPS sensors are sought-after for the assessment of the quality of water and pharmaceutical products. Therefore, elucidation of binding epitopes of LPS interacting molecules would be vital for the development of antimicrobial, antiendotoxic molecules. Polymyxin B (PMB), an antibacterial cyclic lipo-peptide, is well known for its LPS sequestering and neutralizing activities. Here, we have used saturation transfer difference (STD) NMR methods for characterizing interactions of PMB with LPS from E. coli 0111:B4 and P. aeruginosa. The dissociation constants of the LPS-PMB complexes were obtained from concentration dependent STD studies. Further a detailed epitope mapping of PMB has been carried out in E. coli 0111:B4 LPS micelles. Experiments including one-dimensional 1H STD, two-dimensional 1H-1H STD-TOCSY and naturalabundance 13C-1H STD-HSQC, are performed to determine the site(s) of interactions of PMB with endotoxin at atomic resolution. Our studies reveal that the hydrophobic sidechains of PMB including a part of the N-terminus lipidic tail demonstrate close contacts with LPS. In contrast, cyclic backbone structure of PMB has the lowest STD effects suggesting a rather loose association with endotoxin.

摘要

高分辨率的分子与脂多糖(LPS)或内毒素相互作用的研究对于健康、疾病和环境都很重要。LPS 是革兰氏阴性细菌外膜外层的主要成分。LPS 提供了一种有效的屏障,防止包括抗菌剂和抗菌肽在内的多种化合物的渗透。在重症监护病房,LPS 是致命性败血症休克综合征的罪魁祸首。由于 LPS 的毒性,人们正在寻找高亲和力的 LPS 传感器来评估水和药物产品的质量。因此,阐明 LPS 相互作用分子的结合表位对于开发抗菌、抗内毒素分子至关重要。多粘菌素 B(PMB),一种具有抗菌作用的环状脂肽,以其 LPS 螯合和中和活性而闻名。在这里,我们使用饱和转移差异(STD)NMR 方法来表征 PMB 与大肠杆菌 0111:B4 和铜绿假单胞菌 LPS 的相互作用。通过浓度依赖性 STD 研究获得了 LPS-PMB 复合物的离解常数。此外,还在大肠杆菌 0111:B4 LPS 胶束中对内毒素的 PMB 进行了详细的表位作图。进行了包括一维 1H STD、二维 1H-1H STD-TOCSY 和天然丰度 13C-1H STD-HSQC 在内的实验,以确定 PMB 与内毒素相互作用的部位(s)达到原子分辨率。我们的研究表明,PMB 的疏水性侧链,包括部分 N-末端脂质尾部,与 LPS 有密切的接触。相比之下,PMB 的环状骨架结构具有最低的 STD 效应,这表明其与内毒素的结合相对松散。

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