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A new high-performance heterologous fungal expression system based on regulatory elements from the Aspergillus terreus terrein gene cluster

机译:一种基于 tererusillus terreus terrein基因簇的调控元件的新型高性能异源真菌表达系统

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Recently, the Aspergillus terreus terrein gene cluster was identified and selected for development of a new heterologous expression system. The cluster encodes the specific transcription factor TerR that is indispensable for terrein cluster induction. To identify TerR binding sites, different recombinant versions of the TerR DNA-binding domain were analyzed for specific motif recognition. The high affinity consensus motif TCGGHHWYHCGGH was identified from genes required for terrein production and binding site mutations confirmed their essential contribution to gene expression in A. terreus . A combination of TerR with its terA target promoter was tested as recombinant expression system in the heterologous host Aspergillus niger . TerR mediated target promoter activation was directly dependent on its transcription level. Therefore, terR was expressed under control of the regulatable amylase promoter P amyB and the resulting activation of the terA target promoter was compared with activation levels obtained from direct expression of reporters from the strong gpdA control promoter. Here, the coupled system outcompeted the direct expression system. When the coupled system was used for heterologous polyketide synthase expression high metabolite levels were produced. Additionally, expression of the Aspergillus nidulans polyketide synthase gene orsA revealed lecanoric acid rather than orsellinic acid as major polyketide synthase product. Domain swapping experiments assigned this depside formation from orsellinic acid to the OrsA thioesterase domain. These experiments confirm the suitability of the expression system especially for high-level metabolite production in heterologous hosts.
机译:最近,鉴定并选择了曲霉曲霉(Terreus)terrein基因簇,以开发新的异源表达系统。该簇编码特异转录因子TerR,这对于terrein簇诱导是必不可少的。为了鉴定TerR结合位点,分析了TerR DNA结合域的不同重组形式的特异性基序识别。高亲和力共识主题TCGGHHWYHCGGH是从所需的基因鉴定土产生和结合位点突变证实他们必不可少的贡献基因在土杆菌。 TerR及其terA靶启动子的组合在异源黑曲霉中作为重组表达系统进行了测试。 TerR介导的目标启动子激活直接取决于其转录水平。因此,在可调节的淀粉酶启动子P amyB的控制下表达terR,并将所得的terA靶标启动子激活与从强gpdA对照启动子直接表达报道分子获得的激活水平进行比较。在这里,耦合系统胜过直接表达系统。当偶联系统用于异源聚酮化合物合酶表达时,产生了高代谢物水平。此外,构巢曲霉聚酮化合物合酶基因orsA的表达揭示了作为主要聚酮化合物合酶产物的lecanoric acid而不是奥来酸。域交换实验将这种从奥数酸中形成的深层分配给了OrsA硫酯酶结构域。这些实验证实了表达系统的适用性,特别是对于异源宿主中高水平代谢产物的生产。

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