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PNA Length Restriction of Antibacterial Activity of Peptide-PNA Conjugates in Escherichia coli Through Effects of the Inner Membrane

机译:通过内膜的作用PNA长度限制肽-PNA结合物在大肠杆菌中的抗菌活性

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摘要

Peptide Nucleic Acid (PNA)-peptide conjugates targeting essential bacterial genes are showing promise as antisense antimicrobials in drug discovery. Optimization has focused on selection of target genes and exact localization around the ribosome binding site, but surprisingly a length optimum around 10–12 nucleobases has been found. Addressing this observation, we have investigated the relationship between PNA-length, PNA–RNA duplex stability and antimicrobial activity in E. coli in more detail. For PNAs of identical length of ten nucleobases the expected reverse correlation between the thermal stability (Tm) of the PNA–RNA duplex and the MIC for single mismatched PNAs was found. Also the expected direct correlation between the length of the PNA and the PNA–RNA duplex stability was found. Nonetheless, 10-mer PNAs [in a 6–18 mer extension series of (KFF)3K- and (RXR)4 conjugates] were the most active as antisense antimicrobials in both wild type E. coli MG1655 and AS19, suggesting that the size constraint is related to the bacterial uptake of PNA-peptide conjugates. This conclusion was supported by flow cytometry data showing higher bacterial uptake of shorter PNA fluorophore labeled conjugates. Interestingly, the size-limited uptake seems independent on outer membrane integrity (AS19), and thus the results suggest that the inner membrane limits the molecular size for peptide-PNA passage.
机译:靶向必需细菌基因的肽核酸(PNA)-肽缀合物在药物发现中显示出作为反义抗菌剂的前景。优化的重点是靶基因的选择和核糖体结合位点的精确定位,但令人惊讶的是,发现了长度最佳的约10–12个核碱基。针对这一观察,我们更详细地研究了PNA长度,PNA-RNA双链体稳定性与大肠杆菌中抗菌活性之间的关系。对于十个碱基的相同长度的PNA,发现单个错配PNA的PNA-RNA双链体的热稳定性(Tm)与MIC之间的预期反向相关性。还发现了预期的PNA长度与PNA-RNA双链体稳定性之间的直接相关性。尽管如此,在野生型大肠杆菌MG1655和AS19中,10-mer PNAs(在(KFF)3K-和(RXR)4共轭物的6-18mer延伸系列中)作为反义抗菌剂最活跃。约束与PNA-肽结合物的细菌摄取有关。流式细胞术数据支持这一结论,表明较短的PNA荧光团标记的结合物对细菌的吸收更高。有趣的是,大小受限的摄取似乎不依赖于外膜完整性(AS19),因此结果表明内膜限制了肽PNA通过的分子大小。

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