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类TetR调节因子Sco4385和类Crp调节因子Sco3571调节M512中抗生素的异源生产。

The TetR-like regulator Sco4385 and Crp-like regulator Sco3571 modulate heterologous production of antibiotics in M512.

作者信息

Wilcken Sarah, Koutsandrea Panagiota-Hanna, Bakker Tomke, Kulik Andreas, Orthwein Tim, Franz-Wachtel Mirita, Harbig Theresa, Nieselt Kay Katja, Forchhammer Karl, Brötz-Oesterhelt Heike, Macek Boris, Mordhorst Silja, Kaysser Leonard, Gust Bertolt

机构信息

Pharmaceutical Biology, Pharmaceutical Institute, Eberhard-Karls-University Tübingen, Tübingen, Germany.

Partner Site Tübingen, German Centre for Infection Research (DZIF), Tübingen, Germany.

出版信息

Appl Environ Microbiol. 2025 May 21;91(5):e0231524. doi: 10.1128/aem.02315-24. Epub 2025 Apr 4.

Abstract

Heterologous expression in well-studied model strains is a routinely applied method to investigate biosynthetic pathways. Here, we pursue a comparative approach of large-scale DNA-affinity-capturing assays (DACAs) coupled with semi-quantitative mass spectrometry (MS) to identify putative regulatory proteins from M512, which bind to the heterologously expressed biosynthetic gene clusters (BGCs) of the liponucleoside antibiotics caprazamycin and liposidomycin. Both gene clusters share an almost identical genetic arrangement, including the location of promoter regions, as detected by RNA sequencing. A total of 2,214 proteins were trapped at the predicted promoter regions, with only three binding to corresponding promoters in both gene clusters. Among these, the overexpression of a yet uncharacterized TetR-family regulator (TFR), Sco4385, increased caprazamycin but not liposidomycin production. Protein-DNA interaction experiments using biolayer interferometry confirmed the binding of Sco4385 to P and P at different locations within both promoter regions, which might explain its functional variance. Sequence alignment allowed the determination of a consensus sequence present in both promoter regions, to which Sco4385 was experimentally shown to bind. Furthermore, we found that the overexpression of the Crp regulator, Sco3571, leads to a threefold increase in caprazamycin and liposidomycin production yields, possibly due to an increased expression of a precursor pathway.IMPORTANCEStreptomycetes are well-studied model organisms for the biosynthesis of pharmaceutically, industrially, and biotechnologically valuable metabolites. Their naturally broad repertoire of natural products can be further exploited by heterologous expression of biosynthetic gene clusters (BGCs) in non-native host strains. This approach forces the host to adapt to a new regulatory and metabolic environment. In our study, we demonstrate that a host regulator not only interacts with newly incorporated gene clusters but also regulates precursor supply for the produced compounds. We present a comprehensive study of regulatory proteins that interact with two genetically similar gene clusters for the biosynthesis of liponucleoside antibiotics. Thereby, we identified regulators of the heterologous host that influence the production of the corresponding antibiotic. Surprisingly, the regulatory interaction is highly specific for each biosynthetic gene cluster, even though they encode largely structurally similar metabolites.

摘要

在深入研究的模式菌株中进行异源表达是一种常用于研究生物合成途径的方法。在此,我们采用大规模DNA亲和捕获分析(DACA)与半定量质谱(MS)相结合的比较方法,从M512中鉴定假定的调控蛋白,这些蛋白可与脂核苷类抗生素卡普霉素和脂多霉素的异源表达生物合成基因簇(BGC)结合。通过RNA测序检测发现,这两个基因簇具有几乎相同的基因排列,包括启动子区域的位置。共有2214种蛋白质被困在预测的启动子区域,其中只有三种与两个基因簇中的相应启动子结合。其中,一种尚未表征的四环素阻遏物家族调节因子(TFR)Sco4385的过表达增加了卡普霉素的产量,但未增加脂多霉素的产量。使用生物层干涉术进行的蛋白质 - DNA相互作用实验证实了Sco4385与两个启动子区域内不同位置的P和P结合,这可能解释了其功能差异。序列比对确定了两个启动子区域中存在的共有序列,实验表明Sco4385可与之结合。此外,我们发现Crp调节因子Sco3571的过表达导致卡普霉素和脂多霉素的产量提高了三倍,这可能是由于前体途径的表达增加所致。

重要性

链霉菌是用于生物合成具有药学、工业和生物技术价值的代谢产物的深入研究的模式生物。它们天然广泛的天然产物库可以通过在非天然宿主菌株中异源表达生物合成基因簇(BGC)来进一步开发利用。这种方法迫使宿主适应新的调控和代谢环境。在我们的研究中,我们证明宿主调节因子不仅与新整合的基因簇相互作用,还调节所产生化合物的前体供应。我们对与两个用于脂核苷类抗生素生物合成的基因相似的基因簇相互作用的调控蛋白进行了全面研究。由此,我们鉴定了影响相应抗生素生产的异源宿主调节因子。令人惊讶的是,尽管它们编码的代谢产物在很大程度上结构相似,但调控相互作用对每个生物合成基因簇具有高度特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e515/12093943/ade952d5ba12/aem.02315-24.f001.jpg

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