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首页> 外文期刊>Journal of bacteriology >orf4 of the Bacillus cereus sigB Gene Cluster Encodes a General Stress-Inducible Dps-Like Bacterioferritin
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orf4 of the Bacillus cereus sigB Gene Cluster Encodes a General Stress-Inducible Dps-Like Bacterioferritin

机译:蜡样芽孢杆菌sigB基因簇的orf4编码一般应激诱导的Dps细菌铁蛋白

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The function of orf4 in the sigB cluster in Bacillus cereus ATCC 14579 remains to be explored. Amino-acid sequence analysis has revealed that Orf4 is homologous with bacterioferritins and Dps. In this study, we generated an orf4-null mutant and produced recombinant protein rOrf4 to establish the role of orf4. In vitro, the purified rOrf4 was found to exist in two distinct forms, a dimeric form and a polymer form, through size exclusion analysis. The latter form exhibited a unique filament structure, in contrast to the typical spherical tetracosamer structure of bacterioferritins; the former can be induced to form rOrf4 polymers immediately after the addition of FeCl2. Catalysis of the oxidation of ferrous irons by ferroxidase activity was detected with rOrf4, and the mineralized irons were subsequently sequestered only in the rOrf4 polymer. Moreover, rOrf4 exerted DNA-protective activity against oxidative damage via DNA binding in a nonspecific manner, as is seen with Dps. In vivo, deletion of orf4 had no effect on activation of the alternative sigma factor σB, and therefore, orf4 is not associated with σB regulation; however, orf4 can be significantly upregulated upon environmental stress but not H2O2 treatment. B. cereus strains with constitutive Orf4 expression exhibited a viability higher than that of the orf4-null mutant, under specific oxidative stress or heat shock. Taken together, these results suggest that Orf4 functions as a Dps-like bacterioferritin in response to environmental stress and can provide cell protection from oxidative damage through iron sequestration and DNA binding.
机译: orf4 在蜡样芽胞杆菌ATCC 14579的 sigB 簇中的功能仍有待探索。氨基酸序列分析表明,Orf4与细菌铁蛋白和Dps同源。在这项研究中,我们产生了一个 orf4 -null突变体,并产生了重组蛋白rOrf4以确立 orf4 的作用。在体外,通过尺寸排阻分析发现纯化的rOrf4以两种不同的形式存在,即二聚体形式和聚合物形式。与细菌铁蛋白的典型球形四cosamer结构相反,后一种形式表现出独特的丝结构。加入FeCl 2 后,可立即诱导前者形成rOrf4聚合物。用rOrf4检测到亚铁通过铁氧化酶活性氧化的催化作用,随后仅将铁矿化的铁螯合在rOrf4聚合物中。而且,如Dps所见,rOrf4通过DNA结合以非特异性方式发挥了针对氧化损伤的DNA保护活性。在体内, orf4 的缺失对替代西格玛因子σ B 的激活没有影响,因此, orf4 与σ<不相关。 sup> B 规则;但是, orf4 可以在环境胁迫下显着上调,而H 2 O 2 处理则不能。 B。在特定的氧化应激或热激条件下,具有组成型Orf4表达的蜡状芽孢杆菌菌株的存活率高于 orf4 -null突变株。综上所述,这些结果表明,Orf4在响应环境压力时起着类似Dps的细菌铁蛋白的作用,并且可以通过铁螯合和DNA结合为细胞提供保护,使其免受氧化损伤。

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