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Roles of the Two-MnSOD System of Stenotrophomonas maltophilia in the Alleviation of Superoxide Stress

机译:嗜麦芽窄食单胞菌的两个MnSOD系统在减轻超氧化物歧化反应中的作用

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摘要

Manganese-dependent superoxide dismutase (MnSOD, SodA) and iron-dependent SOD (FeSOD, SodB) are critical cytosolic enzymes for alleviating superoxide stress. Distinct from the singular sodA gene in most bacteria, Stenotrophomonas maltophilia harbors two sodA genes, sodA1 and sodA2. The roles of SodA1, SodA2, and SodB of S. maltophilia in alleviating superoxide stress were investigated. The expression of sod genes was determined by promoter–xylE transcriptional fusion assay and qRT–PCR. SodA2 and sodB expressions were proportional to the bacterial logarithmic growth, but unaffected by menadione (MD), iron, or manganese challenges. SodA1 was intrinsically unexpressed and inducibly expressed by MD. Complementary expression of sodA1 was observed when sodA2 was inactivated. The individual or combined sod deletion mutants were constructed using the gene replacement strategy. The functions of SODs were assessed by evaluating cell viabilities of different sod mutants in MD, low iron-stressed, and/or low manganese-stressed conditions. Inactivation of SodA1 or SodA2 alone did not affect bacterial viability; however, simultaneously inactivating sodA1 and sodA2 significantly compromised bacterial viability in both aerobic growth and stressed conditions. SodA1 can either rescue or support SodA2 when SodA2 is defective or insufficiently potent. The presence of two MnSODs gives S. maltophilia an advantage against superoxide stress.
机译:锰依赖性超氧化物歧化酶(MnSOD,SodA)和铁依赖性SOD(FeSOD,SodB)是缓解超氧化物胁迫的关键细胞溶质酶。与大多数细菌中奇异的sodA基因不同,嗜麦芽窄食单胞菌有两个sodA基因,即sodA1和sodA2。研究了嗜麦链球菌的SodA1,SodA2和SodB在缓解超氧化物胁迫中的作用。通过启动子-xylE转录融合测定和qRT-PCR确定sod基因的表达。 SodA2和sodB的表达与细菌的对数增长成正比,但不受甲萘醌(MD),铁或锰激发的影响。 SodA1本质上是不表达的,并且可以被MD诱导表达。当sodA2失活时,观察到sodA1的互补表达。使用基因替代策略构建单个或组合的草皮缺失突变体。通过评估MD,低铁胁迫和/或低锰胁迫条件下不同sod突变体的细胞活力来评估SOD的功能。单独使SodA1或SodA2失活不会影响细菌的生存力。但是,同时使sodA1和sodA2失活在有氧生长和压力条件下都严重损害了细菌的生存能力。当SodA2有缺陷或效力不足时,SodA1可以营救或支持SodA2。两种MnSOD的存在给出 S。嗜麦芽肿是对抗超氧化物胁迫的一种优势。

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