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Bacillus subtilis Fur represses one of two paralogous haem-degrading monooxygenases

机译:枯草芽孢杆菌毛皮抑制了两种副吡咯血液降解的单氧基酶之一

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Identification of genes regulated by the ferric uptake regulator (Fur) protein has provided insights into the diverse mechanisms of adaptation to iron limitation. In the soil bacterium Bacillus subtilis, Fur senses iron sufficiency and represses genes that enable iron uptake, including biosynthetic and transport genes for the siderophore bacillibactin and uptake systems for siderophores produced by other organisms. We here demonstrate that Fur regulates hmoA (formerly yetG), which encodes a haem monooxygenase. HmoA is the first characterized member of a divergent group of putative monooxygenases that cluster separately from the well-characterized IsdG family. B. subtilis also encodes an IsdG family protein designated HmoB (formerly YhgC). Unlike hmoA, hmoB is constitutively expressed and not under Fur control. HmoA and HmoB both bind haemin in vitro with approximately 1?:?1 stoichiometry and degrade haemin in the presence of an electron donor. Mutational and spectroscopic analyses indicate that HmoA and HmoB have distinct active site architectures and interact differently with haem. We further show that B. subtilis can use haem as an iron source, but that this ability is independent of HmoA and HmoB.
机译:鉴定urcrake调节剂(毛皮)蛋白调节的基因已经为适应铁限制的多样化机制提供了见解。在土壤细菌枯草芽孢杆菌中,毛皮感测铁充足并抑制能够熨烫的基因,包括用于剑兰杆菌菌素的生物合成和运输基因,以及由其他生物产生的施用电影的吸收体系。我们在这里表明皮草调节HMOA(以前令人玉树),它们编码了哈姆单氧基酶。 HMOA是具有分开的群体群体群体分开的推定单氧基酶的第一个特征成员。 B.枯草芽孢杆菌还编码ISDG家族蛋白指定的HMOB(以前是YHGC)。与HMOA不同,HMOB组成型且不在毛皮控制下。 HMOA和HMOB两者都在体外结合血红素,约1?:1化学计量和在电子供体存在下降解血红素。突变和光谱分析表明,HMOA和HMOB具有不同的有源网站架构,并与寄存不同的方式相互作用。我们进一步表明B.枯草芽孢杆菌可以用哈姆作为铁源,但这种能力与HMOA和HMOB无关。

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