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Bacteroides fragilis requires the ferrous‐iron transporter FeoAB and the CobN‐like proteins BtuS1 and BtuS2 for assimilation of iron released from heme

机译:脆弱拟杆菌需要亚铁转运蛋白FeoAB和CobN样蛋白BtuS1和BtuS2吸收血红素释放的铁

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摘要

The intestinal commensal and opportunistic anaerobic pathogen Bacteroides fragilis has an essential requirement for both heme and free iron to support growth in extraintestinal infections. In the absence of free iron, B. fragilis can utilize heme as the sole source of iron. However, the mechanisms to remove iron from heme are not completely understood. In this study, we show that the inner membrane ferrous iron transporter ∆feoAB mutant strain is no longer able to grow with heme as the sole source of iron. Genetic complementation with the feoAB gene operon completely restored growth. Our data indicate that iron is removed from heme in the periplasmic space, and the released iron is transported by the FeoAB system. Interestingly, when B. fragilis utilizes iron from heme, it releases heme‐derived porphyrins by a dechelatase activity which is upregulated under low iron conditions. This is supported by the findings showing that formation of heme‐derived porphyrins in the ∆feoAB mutant and the parent strain increased 30‐fold and fivefold (respectively) under low iron conditions compared to iron replete conditions. Moreover, the btuS1 btuS2 double‐mutant strain (lacking the predicted periplasmic, membrane anchored CobN‐like proteins) also showed growth defect with heme as the sole source of iron, suggesting that BtuS1 and BtuS2 are involved in heme‐iron assimilation. Though the dechelatase mechanism remains uncharacterized, assays performed in bacterial crude extracts show that BtuS1 and BtuS2 affect the regulation of the dechelatase‐specific activities in an iron‐dependent manner. These findings suggest that the mechanism to extract iron from heme in Bacteroides requires a group of proteins, which spans the periplasmic space to make iron available for cellular functions.
机译:肠道共生和机会性厌氧性病原体脆弱类杆菌对血红素和游离铁均具有基本要求,以支持肠道外感染的增长。在缺乏游离铁的情况下,脆弱类芽孢杆菌可以利用血红素作为唯一的铁来源。然而,从血红素中去除铁的机理尚未完全了解。在这项研究中,我们表明内膜亚铁转运蛋白ΔfeoAB突变株不再能够以血红素为唯一铁源生长。与feoAB基因操纵子的遗传互补完全恢复了生长。我们的数据表明,铁是从周质空间的血红素中除去的,释放的铁是由FeoAB系统转运的。有趣的是,当脆弱类芽孢杆菌利用血红素中的铁时,它会通过脱螯合酶活性释放血红素衍生的卟啉,而脱铁酶活性在低铁条件下会上调。研究结果表明,在低铁条件下与低铁条件下相比,ΔfeoAB突变体和亲本菌株中血红素卟啉的形成分别增加了30倍和5倍。此外,btuS1 btuS2双突变株(缺乏预测的质膜,膜锚定的CobN样蛋白)也显示了血红素为唯一铁源的生长缺陷,表明BtuS1和BtuS2参与了血红铁同化。尽管脱螯合酶的机制尚未阐明,但在细菌粗提物中进行的测定表明,BtuS1和BtuS2以铁依赖的方式影响脱螯合酶特异性活性的调节。这些发现表明,从拟杆菌中的血红素中提取铁的机制需要一组蛋白质,该蛋白质跨越周质空间以使铁可用于细胞功能。

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