Barnawi Ghufran, Noden Michael, Taylor Robert, Lohani Chuda, Beriashvili David, Palmer Michael, Taylor Scott D
Department of Chemistry, University of Waterloo, 200 University Avenue West, Waterloo, Ontario, N2L 3G1, Canada.
Biopolymers. 2018 Jan 2. doi: 10.1002/bip.23094.
Daptomycin is an important Ca -dependent cyclic lipodepsipeptide antibiotic used to treat serious gram-positive infections. The search for daptomycin analogs with improved activity and their application as tools for studying its mechanism of action has prompted us to develop an entirely Fmoc solid phase approach to the synthesis of daptomycin analogs. Key to the success of this approach was the development of conditions that allowed for the formation of the ester bond on resin-bound peptides consisting of residues 1-10 and the decanoyl lipid tail. The esterification reaction proceeded more efficiently on Tentagel resin as opposed to standard polystyrene resin. This approach was used to synthesize a series of analogs in which each position of Dap-E12-W13, a relatively active daptomycin analog, was individually substituted by alanine. Only positions 2, 6, and 11 were found to be amenable to substitution by alanine in that the corresponding alanine analogs were only 1.5- to 4-fold less active than Dap-E12-W13. We also found that the daptomycin analog, Dap-K6-E12-W13, exhibits in vitro activity approaching that of daptomycin at physiological Ca concentration. Studies with Dap-K6-E12-W13 and model liposomes indicate that this analog interacts with membranes by the same mechanism as daptomycin. This analog is currently being used as a lead for the development daptomycin analogs with improved activity.
达托霉素是一种重要的钙依赖性环脂肽抗生素,用于治疗严重的革兰氏阳性菌感染。寻找活性更高的达托霉素类似物并将其用作研究其作用机制的工具,促使我们开发一种完全基于Fmoc固相法的达托霉素类似物合成方法。该方法成功的关键在于开发出能够在由1-10位残基和癸酰脂质尾组成的树脂结合肽上形成酯键的条件。与标准聚苯乙烯树脂相比,酯化反应在Tentagel树脂上进行得更有效。该方法用于合成一系列类似物,其中相对活性较高的达托霉素类似物Dap-E12-W13的每个位置都被丙氨酸单独取代。仅发现2、6和11位适合被丙氨酸取代,因为相应的丙氨酸类似物的活性仅比Dap-E12-W13低1.5至4倍。我们还发现,达托霉素类似物Dap-K6-E12-W13在生理钙浓度下的体外活性接近达托霉素。对Dap-K6-E12-W13和模型脂质体的研究表明,该类似物与膜的相互作用机制与达托霉素相同。该类似物目前正被用作开发活性更高的达托霉素类似物的先导物。