Wang Xiyan, Isbrandt Thomas, Strube Mikael Lenz, Paulsen Sara Skøtt, Nielsen Maike Wennekers, Buijs Yannick, Schoof Erwin M, Larsen Thomas Ostenfeld, Gram Lone, Zhang Sheng-Da
Department of Bioengineering, Technical University of Denmark, DK-2800 Kgs Lyngby, Denmark.
Mar Drugs. 2021 Feb 12;19(2):108. doi: 10.3390/md19020108.
Genome mining of pigmented has revealed a large potential for the production of bioactive compounds and hydrolytic enzymes. The purpose of the present study was to explore this bioactivity potential in a potent antibiotic and enzyme producer, strain S4059. Proteomic analyses (data are available via ProteomeXchange with identifier PXD023249) indicated that a highly efficient chitin degradation machinery was present in the red-pigmented S4059 when grown on chitin. Four GH18 chitinases and two GH20 hexosaminidases were significantly upregulated under these conditions. GH19 chitinases, which are not common in bacteria, are consistently found in pigmented and in S4059, GH19 was only detected when the bacterium was grown on chitin. To explore the possible role of GH19 in pigmented , we developed a protocol for genetic manipulation of S4059 and deleted the GH19 chitinase, and compared phenotypes of the mutant and wild type. However, none of the chitin degrading ability, secondary metabolite profile, or biofilm-forming capacity was affected by GH19 deletion. In conclusion, we developed a genetic manipulation protocol that can be used to unravel the bioactive potential of pigmented pseudoalteromonads. An efficient chitinolytic enzyme cocktail was identified in S4059, suggesting that this strain could be a candidate with industrial potential.
对产色素细菌的基因组挖掘揭示了其在生物活性化合物和水解酶生产方面的巨大潜力。本研究的目的是在一种强效抗生素和酶产生菌——假交替单胞菌属菌株S4059中探索这种生物活性潜力。蛋白质组学分析(数据可通过ProteomeXchange获得,标识符为PXD023249)表明,当在几丁质上生长时,红色色素沉着的假交替单胞菌S4059中存在高效的几丁质降解机制。在这些条件下,四种GH18几丁质酶和两种GH20氨基己糖苷酶显著上调。细菌中不常见的GH19几丁质酶在产色素假交替单胞菌中一直存在,在S4059中,只有当细菌在几丁质上生长时才检测到GH19。为了探索GH19在产色素假交替单胞菌中的可能作用,我们开发了一种S4059基因操作方案,删除了GH19几丁质酶,并比较了突变体和野生型的表型。然而,几丁质降解能力、次生代谢产物谱或生物膜形成能力均未受到GH19缺失的影响。总之,我们开发了一种基因操作方案,可用于揭示产色素假交替单胞菌的生物活性潜力。在S4059中鉴定出了一种高效的几丁质分解酶混合物,表明该菌株可能是具有工业潜力的候选菌株。