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首页> 外文期刊>Archives of microbiology >Identification by gene deletion analysis of barS2, a gene involved in the biosynthesis of gamma-butyrolactone autoregulator in Streptomyces virginiae
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Identification by gene deletion analysis of barS2, a gene involved in the biosynthesis of gamma-butyrolactone autoregulator in Streptomyces virginiae

机译:通过barS2的基因缺失分析进行鉴定,barS2是与弗吉尼亚州链霉菌中γ-丁内酯自动调节剂的生物合成有关的基因

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摘要

Virginiae butanolide (VB) is a member of the gamma-butyrolactone autoregulators and triggers the production of streptogramin antibiotics virginiamycin M-1 and S in Streptomyces virginiae. A VB biosynthetic gene (barS2) was localized in a 10-kb regulatory island which controls the virginiamycin biosynthesis/resistance of S. virginiae, and analyzed by gene disruption/complementation. The barS2 gene is flanked by barS1, another VB biosynthetic gene catalyzing stereospecific reduction of an A-factor-type precursor into a VB-type compound, and barX encoding a pleiotropic regulator for virginiamycin biosynthesis. The deduced product of barS2 possessed moderate similarity to a putative dehydrogenase of Streptomyces venezuelae, encoded by jadW(2) located in similar gene arrangement to that in the regulatory island of S. virginiae. A barS2-disruptant (strain IC152), created by means of homologous recombination, showed no differences in growth in liquid medium or morphology on solid medium compared to a wild-type strain, suggesting that BarS2 does not play any role in primary metabolism or morphological differentiation of S. virginiae. In contrast, no initiation of virginiamycin production or VB production was detected with the strain IC152 until 18 h of cultivation, at which time full production of virginiamycin occurs in the wild-type strain. The delayed virginiamycin production of the strain IC152 was fully restored to the level of the wild-type strain either by the exogenous addition of VB or by complementation of the intact barS2 gene, indicating that the lack of VB production at the initiation phase of virginiamycin production is the sole reason for the defect of virginiamycin production, and the barS2 gene is of primary importance for VB biosynthesis in S. virginiae.
机译:Virginiae butanolide(VB)是γ-丁内酯自动调节器的成员,并触发弗吉尼亚州链霉菌中链霉菌素抗生素维吉尼亚霉素M-1和S的产生。 VB生物合成基因(barS2)位于一个10kb的调节岛中,该岛控制弗吉尼亚霉素的生物合成/抗性,并通过基因破坏/互补进行分析。 barS2基因的侧面是barS1,barS1是另一种VB生物合成基因,可催化A因子型前体立体定向还原为VB型化合物,而barX则编码用于维吉尼亚霉素生物合成的多效性调节剂。 barS2的推导产物与委内链霉菌的推定脱氢酶具有中等程度的相似性,由jadW(2)编码,其基因排列与弗吉尼亚州链球菌的调控岛相似。与野生型菌株相比,通过同源重组产生的barS2破坏剂(IC152菌株)在液体培养基中的生长或在固体培养基上的形态无差异,这表明BarS2在初级代谢或形态学中没有任何作用弗吉尼亚链霉菌的分化。相反,直到培养18小时,用菌株IC152都未检测到维吉尼亚霉素产生或VB产生的开始,此时野生型菌株中维吉尼亚霉素的完全产生。通过外源添加VB或完整的barS2基因互补,菌株IC152的延迟弗吉尼亚霉素生产已完全恢复至野生型菌株的水平,表明在弗吉尼亚霉素生产起始阶段缺乏VB生产。这是维吉尼亚霉素生产缺陷的唯一原因,而barS2基因对于维吉尼亚链球菌的VB生物合成至关重要。

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