Department of Molecular Tropical Medicine and Genetics, Faculty of Tropical Medicine, Mahidol University, Bangkok, 10400, Thailand.
Department of Microbiology and Immunology, Faculty of Tropical Medicine, Mahidol University, Bangkok, 10400, Thailand.
Sci Rep. 2020 Jun 26;10(1):10453. doi: 10.1038/s41598-020-67382-y.
A bpss2242 gene, encoding a putative short-chain dehydrogenase/oxidoreductase (SDR) in Burkholderia pseudomallei, was identified and its expression was up-regulated by ten-fold when B. pseudomallei was cultured under high salt concentration. Previous study suggested that BPSS2242 plays important roles in adaptation to salt stress and pathogenesis; however, its biological functions are still unknown. Herein, we report the biochemical properties and functional characterization of BPSS2242 from B. pseudomallei. BPSS2242 exhibited NADPH-dependent reductase activity toward diacetyl and methylglyoxal, toxic electrophilic dicarbonyls. The conserved catalytic triad was identified and found to play critical roles in catalysis and cofactor binding. Tyr162 and Lys166 are involved in NADPH binding and mutation of Lys166 causes a conformational change, altering protein structure. Overexpression of BPSS2242 in Escherichia coli increased bacterial survival upon exposure to diacetyl and methylglyoxal. Importantly, the viability of B. pseudomallei encountered dicarbonyl toxicity was enhanced when cultured under high salt concentration as a result of BPSS2242 overexpression. This is the first study demonstrating that BPSS2242 is responsible for detoxification of toxic metabolites, constituting a protective system against reactive carbonyl compounds in B. pseudomallei..
在布氏杆菌假单胞菌中鉴定出 bpss2242 基因,该基因编码一种假定的短链脱氢酶/氧化还原酶(SDR)。当布氏杆菌假单胞菌在高盐浓度下培养时,其表达水平上调了十倍。先前的研究表明,BPSS2242 在适应盐胁迫和发病机制中发挥重要作用;然而,其生物学功能仍不清楚。本文报道了来自布氏杆菌假单胞菌的 BPSS2242 的生化特性和功能特征。BPSS2242 对二乙酰和甲基乙二醛(有毒亲电子二羰基化合物)表现出 NADPH 依赖性还原酶活性。鉴定出保守的催化三联体,发现其在催化和辅因子结合中起关键作用。Tyr162 和 Lys166 参与 NADPH 结合,Lys166 的突变导致构象改变,改变蛋白质结构。在大肠杆菌中过表达 BPSS2242 可增加细菌在暴露于二乙酰和甲基乙二醛时的存活率。重要的是,由于 BPSS2242 的过表达,当在高盐浓度下培养时,布氏杆菌假单胞菌遇到二羰基毒性的存活率提高。这是首次研究表明 BPSS2242 负责解毒有毒代谢物,构成了布氏杆菌假单胞菌中对反应性羰基化合物的保护系统。