Institute of Medical Microbiology, Virology and Hygiene, Rostock University Medical Center, Rostock, Germany.
Mol Ther Nucleic Acids. 2013 Nov 5;2(11):e132. doi: 10.1038/mtna.2013.62.
While Streptococcus pyogenes is consistently susceptible toward penicillin, therapeutic failure of penicillin treatment has been reported repeatedly and a considerable number of patients exhibit allergic reactions to this substance. At the same time, streptococcal resistance to alternative antibiotics, e.g., macrolides, has increased. Taken together, these facts demand the development of novel therapeutic strategies. In this study, S. pyogenes growth was inhibited by application of peptide-conjugated antisense-peptide nucleic acids (PNAs) specific for the essential gyrase A gene (gyrA). Thereby, HIV-1 Tat peptide-coupled PNAs were more efficient inhibitors of streptococcal growth as compared with (KFF)3K-coupled PNAs. Peptide-anti-gyrA PNAs decreased the abundance of gyrA transcripts in S. pyogenes. Growth inhibition by antisense interference was enhanced by combination of peptide-coupled PNAs with protein-level inhibitors. Antimicrobial synergy could be detected with levofloxacin and novobiocin, targeting the gyrase enzyme, and with spectinomycin, impeding ribosomal function. The prospective application of carrier peptide-coupled antisense PNAs in S. pyogenes covers the use as an antimicrobial agent and the employment as a knock-down strategy for the investigation of virulence factor function.Molecular Therapy-Nucleic Acids (2013) 2, e132; doi:10.1038/mtna.2013.62; published online 5 November 2013.
虽然化脓性链球菌一直对青霉素敏感,但青霉素治疗的治疗失败已被反复报道,并且相当数量的患者对该物质表现出过敏反应。同时,链球菌对替代抗生素(例如大环内酯类)的耐药性也有所增加。综上所述,这些事实要求开发新的治疗策略。在这项研究中,应用针对必需回旋酶 A 基因(gyrA)的肽偶联反义肽核酸(PNA)抑制化脓性链球菌的生长。与(KFF)3K 偶联 PNA 相比,HIV-1 Tat 肽偶联 PNA 更有效地抑制链球菌的生长。肽-抗 gyrA PNA 降低了 gyrA 转录物在化脓性链球菌中的丰度。通过将肽偶联 PNA 与蛋白水平抑制剂结合使用,可增强反义干扰对生长的抑制作用。可以检测到与靶向回旋酶酶的左氧氟沙星和新生霉素以及抑制核糖体功能的大观霉素的抗菌协同作用。载体肽偶联反义 PNA 在化脓性链球菌中的预期应用包括用作抗菌剂以及用作敲低策略来研究毒力因子功能。分子治疗-核酸(2013)2,e132;doi:10.1038/mtna.2013.62;在线发表于 2013 年 11 月 5 日。