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Yeast homologous recombination-based promoter engineering for the activation of silent natural product biosynthetic gene clusters

机译:基于酵母同源重组的启动子工程用于沉默天然产物生物合成基因簇的激活

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摘要

Large-scale sequencing of prokaryotic (meta)genomic DNA suggests that most bacterial natural product gene clusters are not expressed under common laboratory culture conditions. Silent gene clusters represent a promising resource for natural product discovery and the development of a new generation of therapeutics. Unfortunately, the characterization of molecules encoded by these clusters is hampered owing to our inability to express these gene clusters in the laboratory. To address this bottleneck, we have developed a promoter-engineering platform to transcriptionally activate silent gene clusters in a model heterologous host. Our approach uses yeast homologous recombination, an auxotrophy complementation-based yeast selection system and sequence orthogonal promoter cassettes to exchange all native promoters in silent gene clusters with constitutively active promoters. As part of this platform, we constructed and validated a set of bidirectional promoter cassettes consisting of orthogonal promoter sequences, Streptomyces ribosome binding sites, and yeast selectable marker genes. Using these tools we demonstrate the ability to simultaneously insert multiple promoter cassettes into a gene cluster, thereby expediting the reengineering process. We apply this method to model active and silent gene clusters (rebeccamycin and tetarimycin) and to the silent, cryptic pseudogene-containing, environmental DNA-derived Lzr gene cluster. Complete promoter refactoring and targeted gene exchange in this “dead” cluster led to the discovery of potent indolotryptoline antiproliferative agents, lazarimides A and B. This potentially scalable and cost-effective promoter reengineering platform should streamline the discovery of natural products from silent natural product biosynthetic gene clusters.
机译:原核(元)基因组DNA的大规模测序表明,大多数细菌天然产物基因簇在常见的实验室培养条件下不表达。沉默的基因簇代表了天然产品发现和新一代治疗药物开发的有希望的资源。不幸的是,由于我们无法在实验室中表达这些基因簇,因此阻碍了由这些簇编码的分子的表征。为了解决这个瓶颈,我们开发了一个启动子工程平台,以转录激活模型异源宿主中的沉默基因簇。我们的方法使用酵母同源重组,基于营养缺陷型互补的酵母选择系统和序列正交启动子盒,将沉默基因簇中的所有天然启动子与组成型活性启动子交换。作为该平台的一部分,我们构建并验证了一组双向启动子盒,该盒由正交启动子序列,链霉菌核糖体结合位点和酵母选择标记基因组成。使用这些工具,我们展示了将多个启动子盒同时插入基因簇的能力,从而加快了重新设计的过程。我们将这种方法应用于建模活动和沉默的基因簇(瑞贝卡霉素和他那霉素),以及对包含沉默,含隐假基因的环境DNA衍生的Lzr基因簇进行建模。在这个“死”簇中完成启动子重构和靶向基因交换,导致发现了有效的吲哚洛林抗增殖剂lazarimides A和B。这种潜在的可扩展且具有成本效益的启动子再造平台应简化从沉默的天然产物生物合成中发现天然产物的过程。基因簇。

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