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A high-yielding total synthesis of daptomycin, an important clinical antibiotic, is described. Key to the development of this synthesis was the elucidation of a Camps cyclization reaction that occurs in the solid-phase when conventionally used kynurenine (Kyn) synthons, such as Fmoc-l-Kyn(Boc,CHO)-OH and Fmoc-l-Kyn(CHO,CHO)-OH, are exposed to 20% 2-methylpiperidine (2MP)/DMF. During the synthesis of daptomycin, this side reaction was accompanied by intractable peptide decomposition, which resulted in a low yield of Dap and a 4-quinolone containing peptide. The Camps cyclization was found to occur in solution when Boc-l-Kyn(Boc,CHO)-Ot-Bu and Boc-l-Kyn(CHO,CHO)-OMe were exposed to 20% 2MP/DMF giving the corresponding 4-quinolone amino acid. In contrast, Boc-l-Kyn(CHO)-OMe was stable under these conditions, demonstrating that removing one of the electron withdrawing groups from the aforementioned building blocks prevents enolization in 2MP/DMF. Hence, a new synthesis of daptomycin was developed using Fmoc-l-Kyn(Boc)-OH, which is prepared in two steps from Fmoc-l-Trp(Boc)-OH, that proceeded with an unprecedented 22% overall yield. The simplicity and efficiency of this synthesis will facilitate the preparation of analogs of daptomycin. In addition, the elucidation of this side reaction will simplify preparation of other Kyn-containing natural products via Fmoc SPPS.
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http://dx.doi.org/10.1039/d0ob02504f | DOI Listing |
BMC Cancer
September 2025
Graduate School, Kunming Medical University, Kunming, Yunnan, 650500, People's Republic of China.
Background: The imbalance of immune checkpoint molecules leads to immune escape of tumor cells. It has been established that KRAS mutation plays a key role in regulating PD-L1 expression of lung adenocarcinoma. However, the specific mechanism by which KRAS mutation regulates PD-L1 expression still needs further been clarified.
View Article and Find Full Text PDFMicrobiol Spectr
September 2025
London Research and Development Centre, Agriculture and Agri-Food Canada, Ontario, Canada.
The avermectin family of anthelmintics is largely considered to lack antibacterial activity against gram-positive and gram-negative bacteria. Here, we screened six avermectins (ivermectin, eprinomectin, doramectin, abamectin, selamectin, and emamectin benzoate) and a structurally related milbemycin (moxidectin) for antibacterial activity against a panel of representative gram-positive and gram-negative bacteria. We report that emamectin benzoate exhibited activity against several species of gram-positive bacteria, whereas selamectin was active against and .
View Article and Find Full Text PDFJ Med Chem
August 2025
Key Laboratory of Molecular Pharmacology and Drug Evaluation, Ministry of Education, School of Pharmacy, Yantai University, Yantai, Shandong 264005, China.
The escalating threat posed by multidrug-resistant bacteria underscores the urgent need for novel antibiotics. Bacitracin, with its unique undecaprenyl pyrophosphate-targeting mechanism, serves as an ideal template for structural optimization. Herein, we developed a site-selective modification strategy targeting the 7-ornithine amino group, a critical yet underexplored residue in bacitracin.
View Article and Find Full Text PDFInt J Mol Sci
June 2025
Department of Physics and Interdisciplinary Science, Sao Carlos Institute of Physics, University of Sao Paulo, Sao Carlos 13563-120, Brazil.
Daptomycin (DAP) is a therapeutic option for vancomycin-resistant (VRE) infections, but DAP resistance may occur during treatment. Previously, we identified a mutation within the gene that induces hypersusceptibility to DAP. The gene encodes a glycosyltransferase involved in lipoteichoic acid anchor synthesis, which makes it a promising target for enhancing DAP efficacy.
View Article and Find Full Text PDFAntimicrob Agents Chemother
July 2025
Department of Bacteriology, Hiroshima University Graduate School of Biomedical and Health Sciences, Hiroshima, Japan.
D-alanine is an important amino acid for peptidoglycan biosynthesis in . In addition, D-alanine is used for the modification of teichoic acids to weaken the net surface negative charge, leading to decreased susceptibility to cationic antimicrobial agents. D-alanine synthesis is dependent on only two enzymes.
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