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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Hybrids made from antimicrobial peptides with different mechanisms of action show enhanced membrane permeabilization
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Hybrids made from antimicrobial peptides with different mechanisms of action show enhanced membrane permeabilization

机译:具有不同作用机制的抗微生物肽制成的杂交种显示出增强的膜渗透性

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摘要

Combining two known antimicrobial peptides (AMPs) into a hybrid peptide is one promising avenue in the design of agents with increased antibacterial activity. However, very few previous studies have considered the effect of creating a hybrid from one AMP that permeabilizes membranes and another AMP that acts intracellularly after translocating across the membrane. Moreover, very few studies have systematically evaluated the order of parent peptides or the presence of linkers in the design of hybrid AMPs. Here, we use a combination of antibacterial measurements, cellular assays and semi-quantitative confocal microscopy to characterize the activity and mechanism for a library of sixteen hybrid peptides. These hybrids consist of permutations of two primarily membrane translocating peptides, buforin II and DesHDAP1, and two primarily membrane permeabilizing peptides, magainin 2 and parasin. For all hybrids, the permeabilizing peptide appeared to dominate the mechanism, with hybrids primarily killing bacteria through membrane permeabilization. We also observed increased hybrid activity when the permeabilizing parent peptide was placed at the N-terminus. Activity data also highlighted the potential value of considering AMP cocktails in addition to hybrid peptides. Together, these observations will guide future design efforts aiming to design more active hybrid AMPs.
机译:将两种已知的抗微生物肽(AMPS)与杂交肽组合成杂交肽是具有增加的抗菌活性的试剂的承诺大道。然而,非常少数之前的研究已经考虑了从一个放大器产生杂交的效果,该副作用透明膜和另一个放大器在翻转膜穿过膜后的细胞内作用。此外,很少有研究通过系统地评估了母肽的顺序或在杂交放大器的设计中存在接头的存在。在此,我们使用抗菌测量,细胞测定和半定量共聚焦显微镜的组合,以表征六个杂交肽文库的活性和机制。这些杂种由两种主要膜转移肽,Buforin II和Deshdap1的排列组成,以及两个主要膜透化肽,Magainin 2和寄生虫。对于所有杂种,透明肽似乎以主要杀死细菌来占据主导地位的机制,通过膜渗透性杀死细菌。我们还观察到透化母肽置于N-末端时的杂化活性增加。活动数据还突出显示除杂化肽外的考虑AMP鸡尾酒的潜在值。这些观察团将引导未来的设计努力,旨在设计更活跃的混合动力放大器。

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