首页> 外文期刊>Journal of bacteriology >barS1, a Gene for Biosynthesis of a γ-Butyrolactone Autoregulator, a Microbial Signaling Molecule Eliciting Antibiotic Production in Streptomyces Species
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barS1, a Gene for Biosynthesis of a γ-Butyrolactone Autoregulator, a Microbial Signaling Molecule Eliciting Antibiotic Production in Streptomyces Species

机译:barS1,一种用于生物合成γ-丁内酯自动调节剂的基因,一种微生物链霉菌属物种中促进抗生素生产的微生物信号分子

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From Streptomyces virginiae, in which production of streptogramin antibiotic virginiamycin M1 and S is tightly regulated by a low-molecular-weight Streptomyces hormone called virginiae butanolide (VB), which is a member of the γ-butyrolactone autoregulators, the hormone biosynthetic gene (barS1) was cloned and characterized by heterologous expression in Escherichia coli and by gene disruption in S. virginiae. The barS1 gene (a 774-bp open reading frame encoding a 257-amino-acid protein [Mr, 27,095]) is situated in the 10-kb regulator island surrounding the VB-specific receptor gene, barA. The deduced BarS1 protein is weakly homologous to β-ketoacyl-acyl carrier protein/coenzyme A reductase and belongs to the superfamily of short-chain alcohol dehydrogenase. The function of the BarS1 protein in VB biosynthesis was confirmed by BarS1-dependent in vitro conversion of 6-dehydro-VB-A to VB-A, the last catalytic step in VB biosynthesis. Of the four possible enantiomeric products from racemic 6-dehydro-VB-A as a substrate, only the natural enantiomer of (2R,3R,6S)-VB-A was produced by the purified recombinant BarS1 (rBarS1), indicating that rBarS1 is the stereospecific reductase recognizing (3R)-isomer as a substrate and reducing it stereospecifically to the (6S) product. In the ΔbarS1 mutant created by homologous recombination, the production of VB as well as the production of virginiamycin was lost. The production of virginiamycin by the ΔbarS1 mutant was fully recovered by the external addition of VB to the culture, which indicates that the barS1 gene is essential in the biosynthesis of the autoregulator VBs in S. virginiae and that the failure of virginiamycin production was a result of the loss of VB production.
机译:来自 Streptomyces virginiae ,其中链霉菌素抗生素virginiamycin M 1 和S的产生受称为低分子量的低分子量 Streptomyces 激素的严格调控丁醇内酯(VB)是γ-丁内酯自动调节器的成员,该激素生物合成基因( barS1 )的克隆和特征在于在大肠杆菌中异源表达并通过基因 S的破坏。弗吉尼亚州 barS1 基因(一个774 bp的开放阅读框,编码257个氨基酸的蛋白质[ M r ,27,095])位于VB特异性受体基因 barA 周围的10 kb调节子岛。推导的BarS1蛋白与β-酮酰基-酰基载体蛋白/辅酶A还原酶具有弱同源性,属于短链醇脱氢酶的超家族。 BarS1蛋白在VB生物合成中的功能已通过BarS1依赖的6-脱氢-VB-A体外转化为VB-A证实,这是VB生物合成的最后一个催化步骤。外消旋6-脱氢-VB-A为底物的四种可能的对映体产物中,仅(2 R ,3 R ,6 S的天然对映体)-VB-A是由纯化的重组BarS1(rBarS1)产生的,表明rBarS1是立体特异性还原酶,可识别(3 R )-异构体为底物,并将其立体定向还原为(6 S )产品。在通过同源重组产生的ΔbarS1突变体中,VB的产生以及维吉尼亚霉素的产生都丢失了。通过在培养液中外部添加VB,完全恢复了ΔbarS1突变株产生的维吉尼亚霉素,这表明 barS1 基因在自动调节VB的生物合成中必不可少在 S中。弗吉尼亚州,而弗吉尼亚霉素生产失败是由于VB产量下降所致。

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