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米尔霉素 3,生金链霉菌中独特的 SARP 家族多效调节因子。

MilR3, a unique SARP family pleiotropic regulator in Streptomyces bingchenggensis.

机构信息

Institute of Biopharmaceuticals, Taizhou University, 1139 Shifu Avenue, Jiaojiang District, Taizhou, 318000, Zhejiang, People's Republic of China.

出版信息

Arch Microbiol. 2022 Sep 19;204(10):631. doi: 10.1007/s00203-022-03240-x.

Abstract

Streptomyces bingchenggensis is the main industrial producer of milbemycins, which are a group of 16-membered macrocylic lactones with excellent insecticidal activities. In the past several decades, scientists have made great efforts to solve its low productivity. However, a lack of understanding of the regulatory network of milbemycin biosynthesis limited the development of high-producing strains using a regulatory rewiring strategy. SARPs (Streptomyces Antibiotic Regulatory Proteins) family regulators are widely distributed and play key roles in regulating antibiotics production in actinobacteria. In this paper, MilR3 (encoded by sbi_06842) has been screened out for significantly affecting milbemycin production from all the 19 putative SARP family regulators in S. bingchenggensis with the DNase-deactivated Cpf1-based integrative CRISPRi system. Interestingly, milR3 is about 7 Mb away from milbemycin biosynthetic gene cluster and adjacent to a putative type II PKS (the core minimal PKS encoding genes are sbi_06843, sbi_06844, sbi_06845 and sbi_06846) gene cluster, which was proved to be responsible for producing a yellow pigment. The quantitative real-time PCR analysis proved that MilR3 positively affected the transcription of specific genes within milbemycin BGC and those from the type II PKS gene cluster. Unlike previous "small" SARP family regulators that played pathway-specific roles, MilR3 was probably a unique SARP family regulator and played a pleotropic role. MilR3 was an upper level regulator in the MilR3-MilR regulatory cascade. This study first illustrated the co-regulatory role of this unique SARP regulator. This greatly enriches our understanding of SARPs and lay a solid foundation for milbemycin yield enhancement in the near future.

摘要

生黄链霉菌是米尔贝霉素类的主要工业生产者,米尔贝霉素类是一组具有优异杀虫活性的 16 元大环内酯类化合物。在过去的几十年中,科学家们为提高其产量付出了巨大努力。然而,由于对米尔贝霉素生物合成调控网络的了解不足,限制了利用调控重布线策略来开发高产菌株。SARP(链霉菌抗生素调控蛋白)家族调节剂广泛分布,在调节放线菌抗生素产生中发挥关键作用。在本文中,MilR3(由 sbi_06842 编码)已通过基于 DNase 失活 Cpf1 的整合型 CRISPRi 系统从生黄链霉菌的 19 个假定 SARP 家族调节剂中筛选出来,对米尔贝霉素的产生有显著影响。有趣的是,milR3 距离米尔贝霉素生物合成基因簇约 7 Mb,并且紧邻一个假定的 II 型 PKS(核心最小 PKS 编码基因是 sbi_06843、sbi_06844、sbi_06845 和 sbi_06846)基因簇,该基因簇被证明负责产生黄色色素。实时定量 PCR 分析证明,MilR3 正向影响 milbemycin BGC 内特定基因以及 II 型 PKS 基因簇内基因的转录。与以前发挥特定途径作用的“小”SARP 家族调节剂不同,MilR3 可能是一种独特的 SARP 家族调节剂,发挥着多效性作用。MilR3 是 MilR3-MilR 调控级联中的一个上游调控因子。本研究首次阐明了这种独特的 SARP 调节剂的协同调控作用。这极大地丰富了我们对 SARP 的理解,并为未来提高米尔贝霉素的产量奠定了坚实的基础。

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