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Antibacterial Peptide Nucleic Acid-Antimicrobial Peptide (PNA-AMP) Conjugates: Antisense Targeting of Fatty Acid Biosynthesis

机译:抗菌肽核酸-抗菌肽(PNA-AMP)共轭:脂肪酸生物合成的反义靶向。

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摘要

Antisense peptide nucleic acid (PNA) oligomers constitute a novel class of potential antibiotics that inhibit bacterial growth via specific knockdown of essential gene expression. However, discovery of efficient, nontoxic delivery vehicles for such PNA oligomers has remained a challenge. In the present study we show that antimicrobial peptides (AMPs) with an intracellular mode of action can be efficient vehicles for bacterial delivery of an antibacterial PNA targeting the essential acpP gene. The results demonstrate that buforin 2-A (BF2-A), drosocin, oncocin 10, Pep-1-K, KLW-9,13-a, (P59-->W59)-Tat48-60, BF-2A-RXR, and drosocin-RXR are capable of transporting PNA effectively into E. coli (MICs of 1-4 mu M). Importantly, presence of the inner-membrane peptide transporter SbmA was not required for antibacterial activity of PNA-AMP conjugates containing Pep-1-K, KLW-9,13-a, or drosocin-RXR (MICs of 2-4 mu M).
机译:反义肽核酸(PNA)寡聚物构成了一类潜在的抗生素,可通过特异性敲除必需基因表达来抑制细菌的生长。然而,发现用于此类PNA低聚物的有效,无毒的递送载体仍然是挑战。在本研究中,我们表明具有细胞内作用模式的抗菌肽(AMP)可以成为细菌递送靶向必需acpP基因的抗菌PNA的有效载体。结果表明,buforin 2-A(BF2-A),drosocin,oncocin 10,Pep-1-K,KLW-9,13-a,(P59-> W59)-Tat48-60,BF-2A-RXR和drosocin-RXR能够将PNA有效地转运到大肠杆菌(MIC为1-4μM)中。重要的是,对于含有Pep-1-K,KLW-9、13-a或drosocin-RXR(MIC为2-4μM)的PNA-AMP结合物的抗菌活性,不需要内膜肽转运蛋白SbmA的存在。 。

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