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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Antibacterial activities of rhodamine B-conjugated gelsolin-derived peptides compared to those of the antimicrobial peptides cathelicidin LL37, magainin II, and melittin.
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Antibacterial activities of rhodamine B-conjugated gelsolin-derived peptides compared to those of the antimicrobial peptides cathelicidin LL37, magainin II, and melittin.

机译:与抗菌肽cathelicidin LL37,magainin II和melittin的抗菌肽相比,若丹明B共轭凝溶胶蛋白衍生肽的抗菌活性。

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摘要

The growing number of antibiotic-resistant bacteria necessitates the search for new antimicrobial agents and the principles by which they work. We report that cell membrane-permeant rhodamine B (RhB)-conjugated peptides based on the phosphatidylinositol-4,5-bisphosphate binding site of gelsolin can kill the gram-negative organisms Escherichia coli and Pseudomonas aeruginosa and the gram-positive organism Streptococcus pneumoniae. RhB linkage to the QRLFQVKGRR sequence in gelsolin was essential for the antibacterial function, since the unconjugated peptide had no effect on the bacteria tested. Because RhB-QRLFQVKGRR (also termed PBP10), its scrambled sequence (RhB-FRVKLKQGQR), and PBP10 synthesized from D-isomer amino acids show similar antibacterial properties, the physical and chemical properties of these derivatives appear to be more important than specific peptide folding for their antibacterial functions. The similar activities of PBP10 and all-D-amino-acid PBP10 also indicate that a specific interaction between RhB derivatives and bacterial proteins is unlikely to be involved in the bacterial killing function of PBP10. By using a phospholipid monolayer system, we found a positive correlation between the antibacterial function of PBP10, as well as some naturally occurring antibacterial peptides, and the intrinsic surface pressure activity at the hydrophobic-hydrophilic interface. Surprisingly, we observed little or no dependence of the insertion of these peptides into lipid monolayers on the phospholipid composition. These studies show that an effective antimicrobial agent can be produced from a peptide sequence with specificity to a phospholipid not found in bacteria, and comparisons with other antimicrobial agents suggest that the surface activities of these peptides are more important than specific binding to bacterial proteins or lipids for their antimicrobial functions.
机译:抗生素抗性细菌的数量不断增加,因此必须寻找新的抗微生物剂及其作用原理。我们报告说,基于凝溶胶蛋白磷脂酰肌醇-4,5-双磷酸结合位点的细胞膜渗透性若丹明B(RhB)结合肽可以杀死革兰氏阴性菌大肠杆菌和铜绿假单胞菌以及革兰氏阳性菌肺炎链球菌。 RhS与凝溶胶蛋白中QRLFQVKGRR序列的连接对于抗菌功能至关重要,因为未结合的肽对测试的细菌没有影响。由于RhB-QRLFQVKGRR(也称为PBP10),其扰乱序列(RhB-FRVKLKQGQR)和由D-异构体氨基酸合成的PBP10具有相似的抗菌性能,因此这些衍生物的物理和化学性质似乎比特定的肽折叠更重要具有抗菌功能。 PBP10和全D-氨基酸PBP10的相似活性还表明RhB衍生物与细菌蛋白之间的特异性相互作用不太可能参与PBP10的细菌杀灭功能。通过使用磷脂单层系统,我们发现PBP10的抗菌功能以及某些天然存在的抗菌肽与疏水-亲水界面的固有表面压力活性之间呈正相关。令人惊讶地,我们观察到这些肽几乎不依赖于磷脂组合物插入脂质单层中。这些研究表明,可以由对细菌中未发现的磷脂具有特异性的肽序列产生有效的抗微生物剂,并且与其他抗微生物剂的比较表明,这些肽的表面活性比与细菌蛋白或脂质的特异性结合更为重要。因其抗菌功能。

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