Basnet Devi B, Park Je Won, Yoon Yeo Joon
Division of Nano Sciences, Ewha Womans University, Seoul 120-750, Republic of Korea.
J Biotechnol. 2008 May 20;135(1):92-6. doi: 10.1016/j.jbiotec.2008.03.001. Epub 2008 Mar 18.
Ketolides, characterized by possessing a 3-keto group in place of the l-cladinose moiety of erythromycin A, are the recent generation of antimicrobials derived semi-synthetically from the 14-membered ring macrolide erythromycin A. The multi-step synthetic route to ketolides can be shortened by using 5-O-desosaminyl erythronolide A as a precursor, which reduces the steps for the removal of l-cladinose attached at the C-3 position in erythromycin A. Deletion of an eryBV gene encoding mycarosyl glycosyltransferase in the erythromycin-producer Saccharopolyspora erythraea resulted in the accumulation of 5-O-desosaminyl erythronolide B. In vivo expression of the cytochrome P450 gene pikC, which encodes the substrate-flexible hydroxylase from the pikromycin biosynthetic pathway of Streptomyces venezuelae, in the eryBV deletion mutant strain of Sac. erythraea led to 5-O-desosaminyl erythronolide A production.
酮内酯类抗生素的特征是在红霉素A的l-克拉定糖部分的位置上有一个3-酮基,是最近从14元环大环内酯类红霉素A半合成衍生的抗菌药物。通过使用5-O-去氧胺基红霉内酯A作为前体,可以缩短酮内酯类抗生素的多步合成路线,这减少了去除红霉素A中C-3位连接的l-克拉定糖的步骤。在红霉素产生菌糖多孢红霉菌中缺失编码麦考糖基转移酶的eryBV基因,导致5-O-去氧胺基红霉内酯B的积累。在糖多孢红霉菌的eryBV缺失突变菌株中,编码委内瑞拉链霉菌苦霉素生物合成途径中底物灵活羟化酶的细胞色素P450基因pikC的体内表达导致了5-O-去氧胺基红霉内酯A的产生。