4.5 Article

The Bacillus subtilis EfeUOB transporter is essential for high-affinity acquisition of ferrous and ferric iron

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ELSEVIER
DOI: 10.1016/j.bbamcr.2013.05.027

关键词

Iron uptake; Oxidative stress; Tat; YwbL; YwbM; YwbN

资金

  1. DFG [SFB 987]
  2. LOEWE Center for Synthetic Microbiology
  3. CEU [PITN-GA-2008-215524, 244093]
  4. Research Council for Earth and Life Sciences of the Netherlands Organization for Scientific Research through the transnational SysMO project BACELL SysMO2

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Efficient uptake of iron is of critical importance for growth and viability of microbial cells. Nevertheless, several mechanisms for iron uptake are not yet clearly defined. Here we report that the widely conserved transporter EfeUOB employs an unprecedented dual-mode mechanism for acquisition of ferrous (Fe[II]) and ferric (Fe([III]) iron in the bacterium Bacillus subtilis. We show that the binding protein MO and the permease EfeU form a minimal complex for ferric iron uptake. The third component EfeB is a hemoprotein that oxidizes ferrous iron to ferric iron for uptake by EfeUO. Accordingly, EfeB promotes growth under microaerobic conditions where ferrous iron is more abundant. Notably, EfeB also fulfills a vital role in cell envelope stress protection by eliminating reactive oxygen species that accumulate in the presence of ferrous iron. In conclusion, the EfeUOB system contributes to the high-affinity uptake of iron that is available in two different oxidation states. (C) 2013 Elsevier B.V. All rights reserved.

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