Solov'eva S E, Printsevskaia S S, Olsuf'eva E N, Batta G, Preobrazhenskaia M N
Gause Institute of New Antibiotics, Russian Academy of Medical Sciences, B. Pirogovskaya ul. 11, Moscow, 119021, Russia.
Bioorg Khim. 2008 Nov-Dec;34(6):831-9.
New semisynthetic derivatives of eremomycin containing (15)N or F atom were obtained for studying the antibiotic-target interaction in intact cells of Gram-positive bacteria by REDOR NMR method. Interaction of the terminal carboxyl group of amino acid 7 (AA7) of eremomycin with amines in the presence of PyBOP and TBTU reagents resulted in the corresponding [(15)N]-amide, p-fluorobenzylamide, p-fluorophenylpiperazide, and 6-N-(p-fluorobenzyl)aminohexylamide. A selective method of [(15)N]-amidation of carboxyl group of amino acid 3 (AA3) of carboxyeremomycin was developed, and the amide of eremomycin containing [(15)N] in AA3 amide group near the antibiotic binding pocket was obtained. Carboxyeremomycin bisamides substituted at AA3 and AA7 and containing two atoms of [(15)N] or F were obtained from carboxyeremomycin and [(15)N]NH4Cl or the corresponding p-fluorobenzylamine hydrochloride in the presence of PyBOP at pH ~8. The Edman degradation of eremomycin p-fluorobenzylamide gave de-(D-MeLeu)-eremomycin p-fluorobenzylamide, a hexapeptide derivative incapable of the antibiotic binding with -D-Ala-D-Ala fragment of growing cell wall peptidoglycan. Among the compounds studied, carboxyeremomycin bis-p-fluorobenzylamide showed the best activity against both the glycopeptides-sensitive and glycopeptides-resistant strains of staphylococci and enterococci.
为了通过REDOR NMR方法研究革兰氏阳性菌完整细胞中的抗生素-靶点相互作用,制备了含有(15)N或F原子的新的埃瑞莫霉素半合成衍生物。在PyBOP和TBTU试剂存在下,埃瑞莫霉素氨基酸7(AA7)的末端羧基与胺相互作用,生成了相应的[(15)N]-酰胺、对氟苄基酰胺、对氟苯基哌嗪酰胺和6-N-(对氟苄基)氨基己酰胺。开发了一种选择性地对羧基埃瑞莫霉素的氨基酸3(AA3)的羧基进行[(15)N]-酰胺化的方法,并获得了在抗生素结合口袋附近的AA3酰胺基团中含有[(15)N]的埃瑞莫霉素酰胺。在pH约为8的PyBOP存在下,由羧基埃瑞莫霉素与[(15)N]NH4Cl或相应的对氟苄胺盐酸盐反应,得到在AA3和AA7处被取代且含有两个[(15)N]或F原子的羧基埃瑞莫霉素双酰胺。埃瑞莫霉素对氟苄基酰胺的埃德曼降解反应生成了去-(D-MeLeu)-埃瑞莫霉素对氟苄基酰胺,这是一种不能与生长中的细胞壁肽聚糖的-D-Ala-D-Ala片段结合的六肽衍生物。在所研究的化合物中,羧基埃瑞莫霉素双对氟苄基酰胺对葡萄球菌和肠球菌的糖肽敏感菌株及糖肽耐药菌株均表现出最佳活性。