首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Effects of positively charged arginine residues on membrane pore forming activity of Rev-NIS peptide in bacterial cells.
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Effects of positively charged arginine residues on membrane pore forming activity of Rev-NIS peptide in bacterial cells.

机译:带正电荷的精氨酸残基对细菌细胞中Rev-NIS肽的膜孔形成活性的影响。

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摘要

Here, we investigated antibacterial effects of Rev-NIS and suggested the role of positively charged amino acids on membrane pore forming activity of the peptide in bacterial cells, by synthesizing two analogs, Anal R and Anal S. Based on the amphipathic property of Rev-NIS, Anal R and Anal S were designed by substituting E(1) and L(3) to R and L(3) to S, respectively. The circular dichroism (CD) spectroscopy showed that Anal R and Anal S have the same conformation of Rev-NIS, with a significant fraction of helical structure. In succession, the antibacterial susceptibility testing showed that Rev-NIS and its analogs possessed significant activities (Anal R>Rev-NIS>Anal S), without hemolytic effects, against bacterial pathogens including antibiotics-resistant strains. Moreover, the membrane studies, 3,3'-dipropylthiadicarbocyanine iodide (diSC(3)5) staining and FITC-dextran (FD) leakage assay demonstrated that the analogs as well as Rev-NIS acted on the bacterial membranes and potently made pores, with the hydrodynamic radius between 1.4nm and 2.3nm. Especially, Anal R made larger pores than other peptides, with the radius between 2.3nm and 3.3nm. These results also corresponded to the result of antibacterial susceptibility testing. In summary, this study indicates that the two arginine residues are more influential than the hydrophobicity or the helicity, regarding the molecular activity of the peptide, and finally suggests that Anal R peptide may be applied to novel antibacterial agents.
机译:在这里,我们研究了Rev-NIS的抗菌作用,并通过合成两个类似物Anal R和Anal S提出了带正电荷的氨基酸对细菌细胞中肽的膜孔形成活性的作用。基于Rev-NIS的两亲性质通过分别用E(1)和L(3)代替R和L(3)代替S设计NIS,Anal R和AnalS。圆二色性(CD)光谱显示Anal R和Anal S具有相同的Rev-NIS构型,但螺旋结构占很大比例。随后,抗菌药敏试验表明,Rev-NIS及其类似物对细菌病原体(包括抗药性菌株)具有显着的活性(Anal R> Rev-NIS> Anal S),没有溶血作用。此外,膜研究,碘化3,3'-二丙基噻二氧杂花青碘(diSC(3)5)染色和FITC-右旋糖酐(FD)泄漏试验表明,类似物以及Rev-NIS均作用于细菌膜并有效地形成了孔,流体动力学半径在1.4nm和2.3nm之间。特别是,肛门R的毛孔比其他肽更大,半径在2.3nm和3.3nm之间。这些结果也对应于抗菌药敏试验的结果。总而言之,这项研究表明,就肽的分子活性而言,两个精氨酸残基比疏水性或螺旋性更具影响力,最后表明Anal R肽可应用于新型抗菌剂。

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