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Solid-phase Synthesis of Fusaricidin/LI-F Class of Cyclic Lipopeptides: Guanidinylation of Resin-bound Peptidyl Amines

机译:Fusaricidin / LI-F类环脂肽的固相合成:树脂结合的肽胺的胍基化

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摘要

Fusaricidins/LI-Fs and related cyclic lipopeptides represent an interesting new class of antibacterial peptides with the potential to meet the challenge of antibiotic resistance in bacteria. Our previous study (N. Bionda et al. ChemMedChem 2012, 7, 871-882) revealed the significance of the guanidinium group located at the termini of the lipidic tails of these cyclic lipopeptides for their antibacterial activities. Therefore, devising a synthetic strategy that will allow incorporation of guanidinium functionality into their structure is of particular practical importance. Since appropriately protected guanidino fatty acid building blocks are not commercially available, our strategy toward guanidinylated fusaricidin/LI-F analogs include solid-phase synthesis of a cyclic lipopeptide precursor possessing a lipidic tail with a terminal amino group followed by its conversion into corresponding guanidine. To find the optimal method for this conversion, we have examined commonly used guanidinylation reagents under the conditions compatible with standard solid-phase peptide synthesis. Described experimental results demonstrated superiority of N,N′-di-Boc-N″-triflylguanidine in solid-phase preparation of fusaricidin/LI-F class of cyclic lipopeptides. The triflylguanidine reagent gave a single monoguanidinylated product in excellent yield independently of the type of solid-support.
机译:Fusaricidins / LI-Fs和相关的环状脂肽代表了有趣的一类新的抗菌肽,具有解决细菌对抗生素耐药性挑战的潜力。我们之前的研究(N. Bionda等人,ChemMedChem 2012,7,871-882)揭示了位于这些环状脂肽脂质尾部末端的胍基对其抗菌活性的重要性。因此,设计一种将胍官能团结合到其结构中的合成策略具有特别的实际重要性。由于没有适当保护的胍基脂肪酸构建基团不可商购,因此我们对胍基化fusaricidin / LI-F类似物的策略包括固相合成环状脂肽前体,该环状脂肽前体具有带有末端氨基的脂质尾基,然后将其转化为相应的胍。为了找到这种转化的最佳方法,我们在与标准固相肽合成兼容的条件下检查了常用的胍基化试剂。所描述的实验结果证明了N,N'-di-Boc-N''-三氟胍在固相制备fusaricidin / LI-F类环脂肽中的优越性。三氟胍试剂与固体支持物的类型无关,以优异的收率得到单一的单胍基化产物。

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