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Identification and Utility of FdmR1 as a Streptomyces Antibiotic Regulatory Protein Activator for Fredericamycin Production in Streptomyces griseus ATCC 49344 and Heterologous Hosts▿ †

机译:FdmR1作为链霉菌抗生素调节蛋白激活剂在灰链霉菌ATCC 49344和异源宿主中生产腓特烈霉素的鉴定和实用性

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摘要

The fredericamycin (FDM) A biosynthetic gene cluster, cloned previously from Streptomyces griseus ATCC 49344, contains three putative regulatory genes, fdmR, fdmR1, and fdmR2. Their deduced gene products show high similarity to members of the Streptomyces antibiotic regulatory protein (SARP) family (FdmR1) or to MarR-like regulators (FdmR and FdmR2). Here we provide experimental data supporting FdmR1 as a SARP-type activator. Inactivation of fdmR1 abolished FDM biosynthesis, and FDM production could be restored to the fdmR1::aac(3)IV mutant by expressing fdmR1 in trans. Reverse transcription-PCR transcriptional analyses revealed that up to 26 of the 28 genes within the fdm gene cluster, with the exception of fdmR and fdmT2, were under the positive control of FdmR1, directly or indirectly. Overexpression of fdmR1 in S. griseus improved the FDM titer 5.6-fold (to about 1.36 g/liter) relative to that of wild-type S. griseus. Cloning of the complete fdm cluster into an integrative plasmid and subsequent expression in heterologous hosts revealed that considerable amounts of FDMs could be produced in Streptomyces albus but not in Streptomyces lividans. However, the S. lividans host could be engineered to produce FDMs via constitutive expression of fdmR1; FDM production in S. lividans could be enhanced further by overexpressing fdmC, encoding a putative ketoreductase, concomitantly with fdmR1. Taken together, these studies demonstrate the viability of engineering FDM biosynthesis and improving FDM titers in both the native producer S. griseus and heterologous hosts, such as S. albus and S. lividans. The approach taken capitalizes on FdmR1, a key activator of the FDM biosynthetic machinery.
机译:fredericamycin(FDM)生物合成基因簇,先前从灰链霉菌ATCC 49344中克隆,包含三个推定的调节基因,fdmR,fdmR1和fdmR2。他们推导的基因产物与链霉菌抗生素调节蛋白(SARP)家族(FdmR1)或MarR样调节剂(FdmR和FdmR2)具有高度相似性。在这里,我们提供了支持FdmR1作为SARP型激活剂的实验数据。 fdmR1的失活取消了FDM的生物合成,并且可以通过反式表达fdmR1来将FDM生产恢复为fdmR1 :: aac(3)IV突变体。逆转录-PCR转录分析显示,在fdm基因簇中的28个基因中,除了fdmR和fdmT2外,多达26个基因直接或间接受FdmR1的正调控。 fdmR1在灰霉菌中的过表达使FDM滴度相对于野生型灰霉菌提高了5.6倍(至约1.36 g /升)。将完整的fdm簇克隆到整合质粒中,并随后在异源宿主中表达表明,在白色链霉菌中可产生大量FDM,而在淡紫链霉菌中则不能产生。然而,可以通过fdmR1的组成型表达来改造S. lividans宿主以产生FDM。 Lividans中的FDM生产可以通过与fdmR1一起过表达编码假定的酮还原酶的fdmC来进一步增强。综上所述,这些研究证明了在天然生产者格氏链球菌和异源宿主(例如白。和轻链链霉菌)中工程化FDM生物合成和提高FDM滴度的可行性。所采用的方法利用了FdmR1,FdmR1是FDM生物合成机制的关键激活剂。

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