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Adaptive response of Amphibacillus xylanus to normal aerobic and forced oxidative stress conditions

机译:Amphibacillus Xylanus对正常有氧和强制氧化胁迫条件的自适应响应

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Amphibacillus xylanus grows at the same rate and with the same cell yield under aerobic and anaerobic conditions. Under aerobic conditions, it exhibits vigorous oxygen consumption in spite of lacking a respiratory system and haem catalase. To understand the adaptive response of A. xylanus to oxidative stresses, a genomic analysis of A. xylanus was conducted. The analysis showed that A. xylanus has the genes of four metabolic systems: two pyruvate metabolic pathways, a glycolytic metabolic pathway and an NADH oxidase (Nox)–AhpC (Prx) system. A transcriptional study confirmed that A. xylanus has these metabolic systems. Moreover, genomic analysis revealed the presence of two genes for NADH oxidase (nox1 and nox2), both of which were identified in the transcriptional analysis. The nox1 gene in A. xylanus was highly expressed under normal aerobic conditions but that of nox2 was not. A purification study of NADH oxidases indicated that the gene product of nox1 is a primary metabolic enzyme responsible for metabolism of both oxygen and reactive oxygen species. A. xylanus was successfully grown under forced oxidative stress conditions such as 0.1 mM H2O2, 0.3 mM paraquat and 80?% oxygen. Proteomic analysis revealed that manganese SOD, Prx, pyruvate dehydrogenase complex E1 and E3 components, and riboflavin synthase β-chain are induced under normal aerobic conditions, and the other proteins except the five aerobically induced proteins were not induced under forced oxidative stress conditions. Taken together, the present findings indicate that A. xylanus has a unique defence system against forced oxidative stress.
机译:Amphibacillus Xylanus以相同的速度增长,并且在有氧和厌氧条件下具有相同的细胞产量。在有氧条件下,尽管缺乏呼吸系统和血红素过氧化氢酶,但它表现出剧烈的耗氧消耗。为了了解A. Xylanus对氧化应激的适应性响应,进行了Xylanus的基因组分析。该分析表明,A. Xylanus具有四种代谢系统的基因:两个丙酮酸代谢途径,糖酵解代谢途径和NADH氧化酶(NOx) - AHPC(PRX)系统。转录研究证实,A. Xylanus具有这些代谢系统。此外,基因组分析表明,在转录分析中鉴定出纳米氧化酶(NOX1和NOX2)的两个基因的存在,两者都鉴定在转录分析中。在正常的好氧条件下,Xylanus中的NOx1基因高度表达,但NOx2的不是。 NADH氧化酶的纯化研究表明NOX1的基因产物是负责氧气和反应性氧的代谢的主要代谢酶。 A. Xylanus在强制氧化应激条件下成功生长,如0.1mM H 2 O 2,0.3mm百草枯和80μm氧。蛋白质组学分析表明,在正常的好氧条件下诱导锰SOD,PRX,丙酮酸脱氢酶复合E1和核苷酸合酶β-链,以及除了5个有氧诱导的蛋白质之外的其他蛋白质在强制氧化胁迫条件下诱导。在一起,本研究结果表明,A. Xylanus具有针对强制氧化应激的独特防御系统。

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