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AflQ1-Q2 通过多重级联反应抑制林肯链霉菌中的林可霉素生物合成。

AflQ1-Q2 represses lincomycin biosynthesis via multiple cascades in Streptomyces lincolnensis.

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, 200237, China.

Department of Applied Biology, East China University of Science and Technology, Shanghai, 200237, China.

出版信息

Appl Microbiol Biotechnol. 2023 May;107(9):2933-2945. doi: 10.1007/s00253-023-12429-z. Epub 2023 Mar 17.

Abstract

Lincomycin is a broad-spectrum antibiotic and particularly effective against Gram-positive pathogens. Albeit familiar with the biosynthetic mechanism of lincomycin, we know less about its regulation, limiting the rational design for strain improvement. We therefore analyzed two-component systems (TCSs) in Streptomyces lincolnensis, and selected eight TCS gene(s) to construct their deletion mutants utilizing CRISPR/Cas9 system. Among them, lincomycin yield increased in two strains (Δ3900-3901 and Δ5290-5291) while decreased in other four strains (Δ3415-3416, Δ4153-4154, Δ4985, and Δ7949). Considering the conspicuous effect, SLINC_5291-5290 (AflQ1-Q2) was subsequently studied in detail. Its repression on lincomycin biosynthesis was further proved by gene complementation and overexpression. By binding to a 16-bp palindromic motif, the response regulator AflQ1 inhibits the transcription of its encoding gene and the expression of eight operons inside the lincomycin synthetic cluster (headed by lmbA, lmbJ, lmbK, lmbV, lmbW, lmbU, lmrA, and lmrC), as demonstrated by quantitative RT-PCR and electrophoretic mobility shift assays. Besides, the regulatory genes including bldD, glnR, lcbR1, and ramR are also regulated by the TCS. According to the screening towards nitrogen sources, aspartate affects the regulatory behavior of histidine kinase AflQ2. And in return, AflQ1 accelerates aspartate metabolism via ask-asd, asd2, and thrA. In summary, we acquired six novel regulators related to lincomycin biosynthesis, and elucidated the regulatory mechanism of AflQ1-Q2. This highly conserved TCS is a promising target for the construction of antibiotic high-yield strains. KEY POINTS: • AflQ1-Q2 is a repressor for lincomycin production. • AflQ1 modulates the expression of lincomycin biosynthetic and regulatory genes. • Aspartate affects the behavior of AflQ2, and its metabolism is promoted by AflQ1.

摘要

林可霉素是一种广谱抗生素,对革兰氏阳性病原体尤其有效。尽管我们熟悉林可霉素的生物合成机制,但对其调控知之甚少,限制了对菌株改良的合理设计。因此,我们分析了林肯链霉菌中的双组分系统 (TCS),并利用 CRISPR/Cas9 系统构建了其缺失突变体。其中,两种菌株(Δ3900-3901 和 Δ5290-5291)的林可霉素产量增加,而另外四种菌株(Δ3415-3416、Δ4153-4154、Δ4985 和 Δ7949)的产量降低。鉴于其显著效果,我们随后详细研究了 SLINC_5291-5290(AflQ1-Q2)。通过基因互补和过表达进一步证明了其对林可霉素生物合成的抑制作用。该响应调节剂 AflQ1 通过结合 16 个碱基对的回文模体,抑制其编码基因及其在林可霉素合成簇内的八个操纵子(以 lmbA、lmbJ、lmbK、lmbV、lmbW、lmbU、lmrA 和 lmrC 为首)的转录和表达,这通过定量 RT-PCR 和电泳迁移率变动分析得到证明。此外,包括 bldD、glnR、lcbR1 和 ramR 在内的调节基因也受到该 TCS 的调节。根据对氮源的筛选结果,天冬氨酸影响组氨酸激酶 AflQ2 的调节行为。反过来,AflQ1 通过 ask-asd、asd2 和 thrA 加速天冬氨酸代谢。综上所述,我们获得了六个与林可霉素生物合成相关的新调控因子,并阐明了 AflQ1-Q2 的调控机制。这种高度保守的 TCS 是构建抗生素高产菌株的有前途的靶点。

关键点

  • AflQ1-Q2 是林可霉素产生的抑制剂。

  • AflQ1 调节林可霉素生物合成和调节基因的表达。

  • 天冬氨酸影响 AflQ2 的行为,其代谢受 AflQ1 促进。

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