Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia.
Molecules. 2019 Feb 2;24(3):553. doi: 10.3390/molecules24030553.
The emerging threat of infections caused by highly drug-resistant bacteria has prompted a resurgence in the use of the lipodecapeptide antibiotics polymyxin B and colistin as last resort therapies. Given the emergence of resistance to these drugs, there has also been a renewed interest in the development of next generation polymyxins with improved therapeutic indices and spectra of action. We report structure-activity studies of 36 polymyxin lipononapeptides structurally characterised by an exocyclic FA-Thr²-Dab³ lipodipeptide motif instead of the native FA-Dab¹-Thr²-Dab³ tripeptide motif found in polymyxin B, removing one of the positively charged residues believed to contribute to nephrotoxicity. The compounds were prepared by solid phase synthesis using an on-resin cyclisation approach, varying the fatty acid and the residues at position 2 (P2), P3 and P4, then assessing antimicrobial potency against a panel of Gram-negative bacteria, including polymyxin-resistant strains. Pairwise comparison of -acyl nonapeptide and decapeptide analogues possessing different fatty acids demonstrated that antimicrobial potency is strongly influenced by the -terminal L-Dab-1 residue, contingent upon the fatty acid. This study highlights that antimicrobial potency may be retained upon truncation of the -terminal L-Dab-1 residue of the native exocyclic lipotripeptide motif found in polymyxin B. The strategy may aid in the design of next generation polymyxins.
高度耐药菌感染的新出现威胁促使人们重新使用脂肽抗生素多粘菌素 B 和粘菌素作为最后的治疗方法。鉴于这些药物出现了耐药性,人们对开发下一代具有改善治疗指数和作用谱的多粘菌素也重新产生了兴趣。我们报告了 36 种多粘菌素脂诺肽的结构活性研究,这些化合物的结构特征是具有外环 FA-Thr²-Dab³ 脂二肽基序,而不是多粘菌素 B 中发现的天然 FA-Dab¹-Thr²-Dab³ 三肽基序,从而去除了一个被认为与肾毒性有关的带正电荷的残基。这些化合物通过固相合成使用树脂内环化方法制备,改变脂肪酸和位置 2(P2)、P3 和 P4 的残基,然后评估它们对一系列革兰氏阴性菌的抗菌效力,包括多粘菌素耐药菌株。带有不同脂肪酸的 -酰基九肽和十肽类似物的成对比较表明,抗菌效力强烈受 -末端 L-Dab-1 残基的影响,这取决于脂肪酸。这项研究强调,在保留多粘菌素 B 中环外脂三肽基序的 -末端 L-Dab-1 残基的情况下,抗菌效力可能得以保留。该策略可能有助于下一代多粘菌素的设计。