Pulsawat Nattika, Kitani Shigeru, Kinoshita Hiroshi, Lee Chang Kwon, Nihira Takuya
International Center for Biotechnology, Osaka University, 2-1, Yamadaoka, Suita, Osaka, 565-0871, Japan.
Arch Microbiol. 2007 Jun;187(6):459-66. doi: 10.1007/s00203-007-0212-2. Epub 2007 Mar 21.
The bkdAB gene cluster, which encodes plausible E1 and E2 components of the branched-chain alpha-keto acid dehydrogenase (BCDH) complex, was isolated from Streptomyces virginiae in the vicinity of a regulatory island for virginiamycin production. Gene disruption of bkdA completely abolished the production of virginiamycin M (a polyketide-peptide antibiotic), while the production of virginiamycin S (a cyclodepsipeptide antibiotic) was unaffected. Complementation of the bkdA disruptant by genome-integration of intact bkdA completely restored the virginiamycin M production, indicating that the bkdAB cluster is essential for virginiamycin M biosynthesis, plausibly via the provision of isobutyryl-CoA as a primer unit. In contrast to a feature usually seen in the Streptomyces E1 component, namely, the separate encoding of the alpha and beta subunits, S. virginiae bkdA seemed to encode the fused form of the alpha and beta subunits, which was verified by the actual catalytic activity of the fused protein in vitro using recombinant BkdA overexpressed in Escherichia coli. Supply of an additional bkdA gene under the strong and constitutive promoter ermE* in the wild-type strain of S. virginiae resulted in enhanced production of virginiamycin M, suggesting that the supply of isobutyryl-CoA is one of the rate-limiting factors in the biosynthesis of virginiamycin M.
bkdAB基因簇编码支链α-酮酸脱氢酶(BCDH)复合体可能的E1和E2组分,该基因簇是从弗吉尼亚链霉菌中分离得到的,位于弗吉尼亚霉素生物合成调控岛附近。bkdA基因的破坏完全消除了弗吉尼亚霉素M(一种聚酮肽类抗生素)的产生,而弗吉尼亚霉素S(一种环缩肽类抗生素)的产生不受影响。通过完整的bkdA基因组整合对bkdA破坏株进行互补,完全恢复了弗吉尼亚霉素M的产生,这表明bkdAB基因簇对于弗吉尼亚霉素M的生物合成至关重要,推测是通过提供异丁酰辅酶A作为起始单元来实现的。与链霉菌E1组分通常的特征(即α和β亚基分别编码)不同,弗吉尼亚链霉菌的bkdA似乎编码α和β亚基的融合形式,这通过在大肠杆菌中过表达的重组BkdA在体外的实际催化活性得到了验证。在弗吉尼亚链霉菌野生型菌株中,在强组成型启动子ermE*的控制下额外提供一个bkdA基因,导致弗吉尼亚霉素M的产量增加,这表明异丁酰辅酶A的供应是弗吉尼亚霉素M生物合成中的限速因素之一。