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Potent Antibacterial Antisense Peptide–Peptide Nucleic Acid Conjugates Against Pseudomonas aeruginosa

机译:强大的抗菌反义肽-肽核酸结合抗铜绿假单胞菌

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摘要

Pseudomonas aeruginosa is an opportunistic pathogen causing severe infections in hospital settings, especially with immune compromised patients, and the increasing prevalence of multidrug resistant strains urges search for new drugs with novel mechanisms of action. In this study we introduce antisense peptide–peptide nucleic acid (PNA) conjugates as antibacterial agents against P. aeruginosa. We have designed and optimized antisense peptide–PNA conjugates targeting the translation initiation region of the ftsZ gene (an essential bacterial gene involved in cell division) or the acpP gene (an essential bacterial gene involved in fatty acid synthesis) of P. aeruginosa (PA01) and characterized these compounds according to their antimicrobial activity and mode of action. Four antisense PNA oligomers conjugated to the H-(R-Ahx-R)4-Ahx-βala or the H-(R-Ahx)6-βala peptide exhibited complete growth inhibition of P. aeruginosa strains PA01, PA14, and LESB58 at 1–2 μM concentrations without any indication of bacterial membrane disruption (even at 20 μM), and resulted in specific reduction of the targeted mRNA levels. One of the four compounds showed clear bactericidal activity while the other significantly reduced bacterial survival. These results open the possibility of development of antisense antibacterials for treatment of Pseudomonas infections.
机译:铜绿假单胞菌是一种机会病原体,在医院环境中会引起严重感染,尤其是免疫功能低下的患者,并且多药耐药菌株的患病率上升促使人们寻找具有新作用机制的新药。在这项研究中,我们介绍了反义肽-肽核酸(PNA)缀合物作为对铜绿假单胞菌的抗菌剂。我们设计和优化了针对铜绿假单胞菌(PA01)的ftsZ基因(参与细胞分裂的必需细菌基因)或acpP基因(参与脂肪酸合成的必需细菌基因)的翻译起始区的反义肽– PNA缀合物。 ),并根据其抗菌活性和作用方式对其进行了表征。与H-(R-Ahx-R)4-Ahx-βala或H-(R-Ahx)6-βala肽缀合的四个反义PNA寡聚体在60℃时对铜绿假单胞菌菌株PA01,PA14和LESB58表现出完全的生长抑制作用浓度为1-2μM,没有任何细菌膜破坏的迹象(即使在20μM时),并导致目标mRNA水平的特异性降低。四种化合物之一显示出明显的杀菌活性,而另一种则明显降低了细菌的存活率。这些结果打开了开发用于治疗假单胞菌感染的反义抗菌剂的可能性。

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