| Literature DB >> 31429133 |
Buzhe Xu1,2, Yann Hermant1,2, Sung-Hyun Yang1, Paul W R Harris1,3,2, Margaret A Brimble1,3,2.
Abstract
A de novo solid-phase synthesis of the cyclic lipodepsipeptide daptomycin via Boc chemistry was achieved. The challenging ester bond formation between the nonproteinogenic amino acid kynurenine was achieved by esterification of a threonine residue with a protected tryptophan. Subsequent late-stage on-resin ozonolysis, inspired by the biomimetic pathway, afforded the kynurenine residue directly. Synthetic daptomycin possessed potent antimicrobial activity (MIC100 =1.0 μg mL-1 ) against S. aureus, while five other daptomycin analogues containing (2R,3R)-3-methylglutamic acid, (2S,4S)-4-methylglutamic acid or canonical glutamic acid at position twelve prepared using this new methodology were all inactive, clearly establishing that the (2S,3R)-3-methylglutamic acid plays a key role in the antimicrobial activity of daptomycin.Entities:
Keywords: Boc chemistry; cyclic lipodepsipeptides; daptomycin; on-resin ozonolysis; solid-phase synthesis
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Year: 2019 PMID: 31429133 DOI: 10.1002/chem.201903725
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236