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Bacterial type III polyketide synthases: phylogenetic analysis and potential for the production of novel secondary metabolites by heterologous expression in pseudomonads.

机译:细菌III型聚酮化合物合酶:系统发生分析和通过假单胞菌中异源表达产生新的次级代谢产物的潜力。

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摘要

Type III polyketide synthases (PKS) were regarded as typical for plant secondary metabolism before they were found in microorganisms recently. Due to microbial genome sequencing efforts, more and more type III PKS are found, most of which of unknown function. In this manuscript, we report a comprehensive analysis of the phylogeny of bacterial type III PKS and report the expression of a type III PKS from the myxobacterium Sorangium cellulosum in pseudomonads. There is no precedent of a secondary metabolite that might be biosynthetically correlated to a type III PKS from any myxobacterium. Additionally, an inactivation mutant of the S. cellulosum gene shows no physiological difference compared to the wild-type strain which is why these type III PKS are assumed to be "silent" under the laboratory conditions administered. One type III PKS (SoceCHS1) was expressed in different Pseudomonas sp. after the heterologous expression in Escherichia coli failed. Cultures of recombinant Pseudomonas sp. harbouring SoceCHS1 turned red upon incubation and the diffusible pigment formed was identified as 2,5,7-trihydroxy-1,4-naphthoquinone, the autooxidation product of 1,3,6,8-tetrahydroxynaphthalene. The successful heterologous production of a secondary metabolite using a gene not expressed under administered laboratory conditions provides evidence for the usefulness of our approach to activate such secondary metabolite genes for the production of novel metabolites.
机译:在最近发现微生物之前,III型聚酮化合物合酶(PKS)被认为是植物次生代谢的典型代表。由于微生物基因组测序的努力,发现了越来越多的III型PKS,其中大多数功能未知。在此手稿中,我们报告了细菌III型PKS的系统发育的全面分析,并报告了粘胶细菌Sorangium cellulosum在假单胞菌中表达的III型PKS。没有任何次级代谢产物可能与任何粘细菌的III型PKS生物合成相关的先例。另外,纤维素酶链球菌基因的失活突变体与野生型菌株相比没有生理上的差异,这就是为什么这些III型PKS在所给予的实验室条件下被认为是“沉默的”的原因。一种III型PKS(SoceCHS1)在不同的假单胞菌sp。中表达。在大肠杆菌中异源表达失败后。重组假单胞菌菌种的培养。孵育后,带有SoceCHS1的化合物会变红,并且形成的可扩散颜料被鉴定为2,5,7-三羟基-1,4-萘醌,即1,3,6,8-四羟基萘的自氧化产物。使用在所管理的实验室条件下未表达的基因成功异源产生次级代谢产物,为我们激活此类次级代谢产物基因用于产生新代谢产物的方法的有效性提供了证据。

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