首页> 外文期刊>Applied Microbiology >LysR-Type Transcriptional Regulator MetR Controls Prodigiosin Production, Methionine Biosynthesis, Cell Motility, H2O2 Tolerance, Heat Tolerance, and Exopolysaccharide Synthesis in Serratia marcescens
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LysR-Type Transcriptional Regulator MetR Controls Prodigiosin Production, Methionine Biosynthesis, Cell Motility, H2O2 Tolerance, Heat Tolerance, and Exopolysaccharide Synthesis in Serratia marcescens

机译:Lysr型转录调节器METR控制Prodigios蛋白的生产,甲硫氨酸生物合成,细胞运动,H2O2耐受性,耐热性和耐腐蚀和脱冬糖合成在塞形菌刻

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Prodigiosin, a secondary metabolite produced by Serratia marcescens , has attracted attention due to its immunosuppressive, antimicrobial, and anticancer properties. However, information on the regulatory mechanism behind prodigiosin biosynthesis in S. marcescens remains limited. In this work, a prodigiosin-hyperproducing strain with the BVG90_22495 gene disrupted (ZK66) was selected from a collection of Tn 5 G transposon insertion mutants. Using real-time quantitative PCR (RT-qPCR) analysis, β-galactosidase assays, transcriptomics analysis, and electrophoretic mobility shift assays (EMSAs), the LysR-type regulator MetR encoded by the BVG90_22495 gene was found to affect prodigiosin synthesis, and this correlated with MetR directly binding to the promoter region of the prodigiosin-synthesis positive regulator PigP and hence negatively regulated the expression of the prodigiosin-associated pig operon. More analyses revealed that MetR regulated some other important cellular processes, including methionine biosynthesis, cell motility, H_(2)O_(2) tolerance, heat tolerance, exopolysaccharide synthesis, and biofilm formation in S. marcescens . Although MetR protein is highly conserved in many bacteria, we report here on the LysR-type regulator MetR exhibiting novel roles in negatively regulating prodigiosin synthesis and positively regulating heat tolerance, exopolysaccharide synthesis, and biofilm formation.IMPORTANCE Serratia marcescens , a Gram-negative bacterium, is found in a wide range of ecological niches and can produce several secondary metabolites, including prodigiosin, althiomycin, and serratamolide. Among them, prodigiosin shows diverse functions as an immunosuppressant, antimicrobial, and anticancer agent. However, the regulatory mechanisms behind prodigiosin synthesis in S. marcescens are not completely understood. Here, we adapted a transposon mutant library to identify the genes related to prodigiosin synthesis, and the BVG90_22495 gene encoding the LysR-type regulator MetR was found to negatively regulate prodigiosin synthesis. The molecular mechanism of the metR mutant hyperproducing prodigiosin was investigated. Additionally, we provided evidence supporting new roles for MetR in regulating methionine biosynthesis, cell motility, heat tolerance, H_(2)O_(2) tolerance, and exopolysaccharide synthesis in S. marcescens . Collectively, this work provides novel insight into regulatory mechanisms of prodigiosin synthesis and uncovers novel roles for the highly conserved MetR protein in regulating prodigiosin synthesis, heat tolerance, exopolysaccharide (EPS) synthesis, and biofilm formation.
机译:Prodigiosin是由Serratia Marcescens产生的次级代谢物,由于其免疫抑制,抗微生物和抗癌性能而引起了注意力。然而,关于S.Marcescens的Prodigiosin生物合成背后的监管机制的信息仍然有限。在这项工作中,选择具有BVG90_22495基因破坏(ZK66)的ProDigiosin-超级菌株(ZK66)中,选自TN 5G转座突变突变体的集合。使用实时定量PCR(RT-QPCR)分析,β-半乳糖苷酶测定,转录组学分析和电泳迁移率移位(EMSAS),发现由BVG90_22495基因编码的Lysr型调节器MERR影响Prodigios素合成,以及它与MetR直接结合到Prodigiosin合成阳性调节剂仔猪的启动子区域的METR相关,因此负面调节Prodigios族相关猪操纵子的表达。更多分析显示,METR调节了一些其他重要的细胞过程,包括甲硫氨酸生物合成,细胞运动,H_(2)O_(2)耐受性,耐热性,越多糖合成和S.Marcescens的生物膜形成。虽然METR蛋白在许多细菌中高度保守,但我们在这里报告了在呈现新的作用的Lysr型调节器METR中,呈现出在负面调节的产品中的新作用和正调节耐热性,脱寡糖合成和生物膜形成。分类雷达毒素,革兰氏菌,在各种生态核桃中发现,可以产生几种次级代谢物,包括Prodigiosin,althiomycl和Serratamolide。其中,Prodigiosin显示不同的功能作为免疫抑制剂,抗微生物和抗癌剂。然而,玛克斯氏菌素合成后面的监管机制并不完全明白。在这里,我们改编了转座子突变库,以鉴定与Prodigiosin合成有关的基因,并且发现编码Lysr型调节剂METR的BVG90_22495基因负调节Prodigiosin合成。研究了METR突变体超级化蛋白酶的分子机制。此外,我们提供了支持在调节甲硫氨酸生物合成,细胞运动,耐热性,H_(2)O_(2)o_(2)耐受性的新作用的证据表明,S.Marcescens中的耐受性。统称,这项工作提供了对Prodigiosin合成的监管机制的新颖洞察力,并在调节Prodigios素合成,耐热性,外糖(EPS)合成和生物膜形成中,揭示了高度保守的MetR蛋白的新颖作用。

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