Literature DB >> 32144106

Two Functional Fatty Acyl Coenzyme A Ligases Affect Free Fatty Acid Metabolism To Block Biosynthesis of an Antifungal Antibiotic in Lysobacter enzymogenes.

Kaihuai Li1,2, Rongxian Hou1,2, Huiyong Xu3, Guichun Wu3, Guoliang Qian1,2, Haihong Wang4, Fengquan Liu5,2,3.   

Abstract

In Lysobacter enzymogenes OH11, RpfB1 and RpfB2 were predicted to encode acyl coenzyme A (CoA) ligases. RpfB1 is located in the Rpf gene cluster. Interestingly, we found an RpfB1 homolog (RpfB2) outside this canonical gene cluster, and nothing is known about its functionality or mechanism. Here, we report that rpfB1 and rpfB2 can functionally replace EcFadD in the Escherichia coli fadD mutant JW1794. RpfB activates long-chain fatty acids (n-C16:0 and n-C18:0) for the corresponding fatty acyl-CoA ligase (FCL) activity in vitro, and Glu-361 plays critical roles in the catalytic mechanism of RpfB1 and RpfB2. Deletion of rpfB1 and rpfB2 resulted in significantly increased heat-stable antifungal factor (HSAF) production, and overexpression of rpfB1 or rpfB2 completely suppressed HSAF production. Deletion of rpfB1 and rpfB2 resulted in increased L. enzymogenes diffusible signaling factor 3 (LeDSF3) synthesis in L. enzymogenes Overall, our results showed that changes in intracellular free fatty acid levels significantly altered HSAF production. Our report shows that intracellular free fatty acids are required for HSAF production and that RpfB affects HSAF production via FCL activity. The global transcriptional regulator Clp directly regulated the expression of rpfB1 and rpfB2 In conclusion, these findings reveal new roles of RpfB in antibiotic biosynthesis in L. enzymogenes IMPORTANCE Understanding the biosynthetic and regulatory mechanisms of heat-stable antifungal factor (HSAF) could improve the yield in Lysobacter enzymogenes Here, we report that RpfB1 and RpfB2 encode acyl coenzyme A (CoA) ligases. Our research shows that RpfB1 and RpfB2 affect free fatty acid metabolism via fatty acyl-CoA ligase (FCL) activity to reduce the substrate for HSAF synthesis and, thereby, block HSAF production in L. enzymogenes Furthermore, these findings reveal new roles for the fatty acyl-CoA ligases RpfB1 and RpfB2 in antibiotic biosynthesis in L. enzymogenes Importantly, the novelty of this work is the finding that RpfB2 lies outside the Rpf gene cluster and plays a key role in HSAF production, which has not been reported in other diffusible signaling factor (DSF)/Rpf-producing bacteria.
Copyright © 2020 Li et al.

Entities:  

Keywords:  Lysobacter enzymogenes OH11; fatty acyl-CoA ligase (FCL); heat-stable antifungal factor (HSAF); intracellular free fatty acids

Year:  2020        PMID: 32144106     DOI: 10.1128/AEM.00309-20

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  3 in total

1.  Separation of Heat-Stable Antifungal Factor From Lysobacter enzymogenes Fermentation Broth via Photodegradation and Macroporous Resin Adsorption.

Authors:  Bao Tang; Lingtian Wu; Jinzi Wang; Weibo Sun; Yancun Zhao; Fengquan Liu
Journal:  Front Microbiol       Date:  2021-05-13       Impact factor: 5.640

2.  The Xanthomonas citri Reverse Fitness Deficiency by Activating a Novel β-Glucosidase Under Low Osmostress.

Authors:  Kaihuai Li; Jinxing Liao; Ming Wei; Shanxu Qiu; Weiyin Wu; Yancun Zhao; Haihong Wang; Qiongguang Liu; Fengquan Liu; Changqing Chang
Journal:  Front Microbiol       Date:  2022-05-02       Impact factor: 5.640

3.  The predatory soil bacterium Lysobacter reprograms quorum sensing system to regulate antifungal antibiotic production in a cyclic-di-GMP-independent manner.

Authors:  Kaihuai Li; Gaoge Xu; Bo Wang; Guichun Wu; Rongxian Hou; Fengquan Liu
Journal:  Commun Biol       Date:  2021-09-24
  3 in total

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