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Immobilization Reduces the Activity of Surface-Bound Cationic Antimicrobial Peptides with No Influence upon the Activity Spectrum

机译:固定化降低了表面结合的阳离子抗菌肽的活性而对活性谱没有影响

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摘要

Early studies of immobilized peptides mainly focused upon the relationship between structural properties and the activity of soluble and surface-tethered sequences. The intention of this study was to analyze the influence of immobilization parameters upon the activity profile of peptides. Resin beads (TentaGel S NH2, HypoGel 400 NH2, and HypoGel 200 NH2) with polyethylene glycol spacers of different lengths were rendered antimicrobial by linkage of an amphipathic model KLAL peptide and magainin-derived MK5E. Standard solid-phase peptide synthesis, thioalkylation, and ligation strategies were used to immobilize the peptides at the C and N termini and via different side-chain positions. Depending upon the resin capacity and the coupling strategies, peptide loading ranged between 0.1 and 0.25 μmol/mg for C-terminally and around 0.03 μmol/mg for N-terminally and side-chain-immobilized peptides. Tethering conserved the activity spectra of the soluble peptides at reduced concentrations. The resin-bound peptides were antimicrobial toward Escherichia coli and Bacillus subtilis in the millimolar range compared to the results seen with micromolar concentrations of the free peptides. B. subtilis was more susceptible than E. coli. The antimicrobial activity distinctly decreased with reduction of the spacer length. Slight differences in the antimicrobial effect of KLAL and MK5E bound at different chain positions on TentaGel S NH2 suggest that the activity is less dependent upon the position of immobilization. Soluble KLAL was active toward red blood cells, whereas MK5E was nonhemolytic at up to about 400 μM. Resin-induced hemolysis hampered the determination of the hemolytic effect of the immobilized peptides. TentaGel S NH2-bound peptides enhanced the permeability of the POPC (1-palmitoyl-2-oleoyl-sn-glycero-3-phospho-choline) and mixed POPC/1-palmitoyl-2-oleoyl-sn-glycero-3-[phospho-rac-(1-glycerol)] (POPC/POPG) bilayers used to model the charge properties of the biological targets. The results suggest that surface immobilization of the cationic amphipathic antimicrobial peptides does not influence the membrane-permeabilizing mode of action. Peptide insertion into the target membrane and likely the exchange of membrane-stabilizing bivalent cations contribute to the antimicrobial effect. In conclusion, reasonable antimicrobial activity of surface-bound peptides requires the optimization of the coupling parameters, with the length of the spacer and the amount of target-accessible peptide being the most important factors.
机译:固定肽的早期研究主要集中在结构性质与可溶性和表面束缚序列活性之间的关系。这项研究的目的是分析固定参数对肽活性谱的影响。通过将两亲性模型KLAL肽和源自麦加胶蛋白的MK5E连接,使具有不同长度的聚乙二醇间隔基的树脂珠(TentaGel S NH2,HypoGel 400 NH2和HypoGel 200 NH2)具有抗菌性。使用标准固相肽合成,硫代烷基化和连接策略将肽固定在C和N末端,并通过不同的侧链位置固定。取决于树脂容量和偶联策略,肽负载量在C端介于0.1和0.25μmol/ mg之间,而N端和侧链固定的肽在0.03μmol/ mg左右。束缚在降低的浓度下保守了可溶性肽的活性谱。与在游离肽的微摩尔浓度下观察到的结果相比,树脂结合的肽在毫摩尔范围内对大肠杆菌和枯草芽孢杆菌具有抗菌性。枯草芽孢杆菌比大肠杆菌更易感。随着间隔物长度的减少,抗菌活性明显降低。在TentaGel S NH2的不同链上结合的KLAL和MK5E的抗菌作用略有不同,这表明其活性较少依赖于固定位置。可溶性KLAL对红细胞有活性,而MK5E在高达约400μM时不溶血。树脂诱导的溶血阻碍了固定肽溶血作用的确定。 TentaGel S NH2结合肽增强了POPC(1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸胆碱)和混合POPC / 1-棕榈酰基-2-油酰基-sn-甘油-3- [磷酸-rac-(1-甘油)](POPC / POPG)双层用于模拟生物靶标的电荷特性。结果表明阳离子两亲性抗菌肽的表面固定化不会影响膜通透性作用方式。肽插入目标膜并可能稳定膜的二价阳离子交换有助于抗菌作用。总之,表面结合肽的合理抗菌活性需要优化偶联参数,其中间隔区的长度和靶标可及肽的数量是最重要的因素。

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