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首页> 外文期刊>Microbial Cell Factories >Identification and utilization of two important transporters: SgvT1 and SgvT2, for griseoviridin and viridogrisein biosynthesis in Streptomyces griseoviridis
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Identification and utilization of two important transporters: SgvT1 and SgvT2, for griseoviridin and viridogrisein biosynthesis in Streptomyces griseoviridis

机译:鉴定和利用了两个重要的转运蛋白:SgvT1和SgvT2,用于灰霉链霉菌中灰黄霉素和病毒多柔素的生物合成

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摘要

Griseoviridin (GV) and viridogrisein (VG, also referred as etamycin), both biosynthesized by a distinct 105?kb biosynthetic gene cluster (BGC) in Streptomyces griseoviridis NRRL 2427, are a pair of synergistic streptogramin antibiotics and very important in treating infections of many multi-drug resistant microorganisms. Three transporter genes, sgvT1–T3 have been discovered within the 105?kb GV/VG BGC, but the function of these efflux transporters have not been identified. In the present study, we have identified the different roles of these three transporters, SgvT1, SgvT2 and SgvT3. SgvT1 is a major facilitator superfamily (MFS) transporter whereas SgvT2 appears to serve as the sole ATP-binding cassette (ABC) transporter within the GV/VG BGC. Both proteins are necessary for efficient GV/VG biosynthesis although SgvT1 plays an especially critical role by averting undesired intracellular GV/VG accumulation during biosynthesis. SgvT3 is an alternative MFS-based transporter that appears to serve as a compensatory transporter in GV/VG biosynthesis. We also have identified the γ-butyrolactone (GBL) signaling pathway as a central regulator of sgvT1–T3 expression. Above all, overexpression of sgvT1 and sgvT2 enhances transmembrane transport leading to steady production of GV/VG in titers ≈?3-fold greater than seen for the wild-type producer and without any notable disturbances to GV/VG biosynthetic gene expression or antibiotic control. Our results shows that SgvT1–T2 are essential and useful in GV/VG biosynthesis and our effort highlight a new and effective strategy by which to better exploit streptogramin-based natural products of which GV and VG are prime examples with clinical potential.
机译:Griseoviridin(GV)和viridogrisein(VG,也称为依他霉素),都是由Streptomyces griseoviridis NRRL 2427中独特的105?kb生物合成基因簇(BGC)生物合成的,是一对协同链霉菌素抗生素,对治疗许多感染非常重要多药耐药微生物。在105?kb GV / VG BGC中发现了三个转运蛋白基因sgvT1-T3,但尚未确定这些外排转运蛋白的功能。在本研究中,我们确定了这三个转运蛋白SgvT1,SgvT2和SgvT3的不同作用。 SgvT1是主要的促进子超家族(MFS)转运蛋白,而SgvT2似乎是GV / VG BGC中唯一的ATP结合盒(ABC)转运蛋白。这两种蛋白对于有效的GV / VG生物合成都是必需的,尽管SgvT1通过避免生物合成过程中不希望的细胞内GV / VG积累起着特别关键的作用。 SgvT3是替代的基于MFS的转运蛋白,似乎在GV / VG生物合成中起补偿性转运蛋白的作用。我们还确定了γ-丁内酯(GBL)信号通路是sgvT1-T3表达的中央调节剂。最重要的是,sgvT1和sgvT2的过表达增强了跨膜转运,导致稳定生产GV / VG,其滴度比野生型生产者高出约1/3倍,并且对GV / VG生物合成基因表达或抗生素控制没有任何明显的干扰。我们的结果表明,SgvT1-T2在GV / VG生物合成中必不可少且有用,我们的努力突出了一种新的有效策略,通过该策略可以更好地利用基于链蛋白的天然产物,其中GV和VG是具有临床潜力的主要实例。

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