Denoya C D, Fedechko R W, Hafner E W, McArthur H A, Morgenstern M R, Skinner D D, Stutzman-Engwall K, Wax R G, Wernau W C
Central Research Division, Pfzer Inc., Groton, Connecticut 06340, USA.
J Bacteriol. 1995 Jun;177(12):3504-11. doi: 10.1128/jb.177.12.3504-3511.1995.
A second cluster of genes encoding the E1 alpha, E1 beta, and E2 subunits of branched-chain alpha-keto acid dehydrogenase (BCDH), bkdFGH, has been cloned and characterized from Streptomyces avermitilis, the soil microorganism which produces anthelmintic avermectins. Open reading frame 1 (ORF1) (bkdF, encoding E1 alpha), would encode a polypeptide of 44,394 Da (406 amino acids). The putative start codon of the incompletely sequenced ORF2 (bkdG, encoding E1 beta) is located 83 bp downstream from the end of ORF1. The deduced amino acid sequence of bkdF resembled the corresponding E1 alpha subunit of several prokaryotic and eukaryotic BCDH complexes. An S. avermitilis bkd mutant constructed by deletion of a genomic region comprising the 5' end of bkdF is also described. The mutant exhibited a typical Bkd- phenotype: it lacked E1 BCDH activity and had lost the ability to grow on solid minimal medium containing isoleucine, leucine, and valine as sole carbon sources. Since BCDH provides an alpha-branched-chain fatty acid starter unit, either S(+)-alpha-methylbutyryl coenzyme A or isobutyryl coenzyme A, which is essential to initiate the synthesis of the avermectin polyketide backbone in S. avermitilis, the disrupted mutant cannot make the natural avermectins in a medium lacking both S(+)-alpha-methylbutyrate and isobutyrate. Supplementation with either one of these compounds restores production of the corresponding natural avermectins, while supplementation of the medium with alternative fatty acids results in the formation of novel avermectins. These results verify that the BCDH-catalyzed reaction of branched-chain amino acid catabolism constitutes a crucial step to provide fatty acid precursors for antibiotic biosynthesis in S. avermitilis.
已从产生抗寄生虫阿维菌素的土壤微生物阿维链霉菌中克隆并鉴定出另一组编码支链α-酮酸脱氢酶(BCDH)的E1α、E1β和E2亚基的基因,即bkdFGH。开放阅读框1(ORF1)(bkdF,编码E1α)将编码一个44394 Da(406个氨基酸)的多肽。未完全测序的ORF2(bkdG,编码E1β)的推定起始密码子位于ORF1末端下游83 bp处。bkdF推导的氨基酸序列类似于几种原核和真核BCDH复合物的相应E1α亚基。还描述了通过缺失包含bkdF 5'端的基因组区域构建的阿维链霉菌bkd突变体。该突变体表现出典型的Bkd-表型:它缺乏E1 BCDH活性,并且失去了在含有异亮氨酸、亮氨酸和缬氨酸作为唯一碳源的固体基本培养基上生长的能力。由于BCDH提供α-支链脂肪酸起始单元,即S(+)-α-甲基丁酰辅酶A或异丁酰辅酶A,这是在阿维链霉菌中启动阿维菌素聚酮化合物骨架合成所必需的,因此破坏的突变体在缺乏S(+)-α-甲基丁酸和异丁酸的培养基中无法产生天然阿维菌素。添加这些化合物中的任何一种都能恢复相应天然阿维菌素的产生,而向培养基中添加替代脂肪酸则会导致形成新型阿维菌素。这些结果证实,BCDH催化的支链氨基酸分解代谢反应是为阿维链霉菌抗生素生物合成提供脂肪酸前体的关键步骤。