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Genome Mining and Genetic Manipulation Reveal New Isofuranonaphthoquinones in Nocardia Species

机译:基因组挖掘和遗传操作揭示了诺卡菌属中新的异呋喃萘醌

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摘要

The identification of specialized metabolites isolated from microorganisms is urgently needed to determine their roles in treating cancer and controlling multidrug-resistant pathogens. Naphthoquinones act as anticancer agents in various types of cancers, but some toxicity indicators have been limited in their appropriate application. In this context, new isofuranonaphthoquinones (ifnq) that are less toxic to humans could be promising lead compounds for developing anticancer drugs. The aim of this study is to identify and characterize novel furanonaphthoquinones (fnqs) from Nocardia sp. CS682 and to evaluate their potential therapeutic applications. Analysis of the genome of Nocardia sp. CS682 revealed the presence of a furanonaphthoquinone (fnq) gene cluster, which displays a similar genetic organization and high nucleotide sequence identity to the ifnq gene cluster from Streptomyces sp. RI-77, a producer of the naphthoquinones JBIR-76 and JBIR-77. In this study, the overexpression of the Streptomyces antibiotic regulatory protein (SARP) in Nocardia sp. CS682DR (nargenicin gene-deleted mutant) explicitly produced new fnqs, namely, NOC-IBR1 and NOC-IBR2. Subsequently, the role of the SARP regulator was confirmed by gene inactivation using CRISPR-Cas9 and complementation studies. Furthermore, antioxidant, antimicrobial, and cytotoxicity assays were performed for the isolated compounds, and it was found that NOC-IBR2 exhibited superior activities to NOC-IBR1. In addition, a flexible methyltransferase substrate, ThnM3, was found to be involved in terminal methylation of NOC-IBR1, which was confirmed by in vitro enzyme assays. Thus, this study supports the importance of genome mining and genome editing approaches for exploring new specialized metabolites in a rare actinomycete called Nocardia.
机译:迫切需要鉴定从微生物中分离的特化代谢物,以确定它们在治疗癌症和控制多重耐药病原体中的作用。萘醌类药物在各种类型的癌症中用作抗癌剂,但一些毒性指标在其适当的应用中受到限制。在这种情况下,对人类毒性较小的新型异呋喃萘醌 (ifnq) 可能成为开发抗癌药物的有前途的先导化合物。本研究的目的是鉴定和表征来自 Nocardia sp. CS682 的新型呋喃萘醌 (fnqs),并评估其潜在的治疗应用。对诺卡氏菌属 CS682 基因组的分析揭示了呋喃萘醌 (fnq) 基因簇的存在,该基因簇与来自链霉菌属 RI-77 的 ifnq 基因簇相似,萘萘醌 JBIR-76 和 JBIR-77 的产生者。在本研究中,链霉菌属抗生素调节蛋白 (SARP) 在 Nocardia sp. CS682DR (nargenicin 基因缺失突变体) 中过表达明确产生了新的 fnqs,即 NOC-IBR1 和 NOC-IBR2。随后,通过使用 CRISPR-Cas9 的基因灭活和互补研究证实了 SARP 调节剂的作用。此外,对分离的化合物进行了抗氧化、抗菌和细胞毒性测定,发现 NOC-IBR2 表现出优于 NOC-IBR1 的活性。此外,发现柔性甲基转移酶底物 ThnM3 参与 NOC-IBR1 的末端甲基化,这已通过体外酶测定得到证实。因此,本研究支持基因组挖掘和基因组编辑方法对于探索一种称为诺卡氏菌的稀有放线菌中新的特殊代谢物的重要性。

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