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Annual Review of Microbiology, ISSN 0066-4227, 10/2015, Volume 69, Issue 1, pp. 229 - 245
Journal Article
Annual Review of Microbiology, ISSN 0066-4227, 01/2015, Volume 69, p. 229
  Iron is an essential nutrient, but it can also be toxic. Therefore, iron homeostasis must be strictly regulated. Transcriptional control of iron-dependent... 
Eukaryotes | E coli | Microbiology | Homeostasis | Iron | Metabolism | Gene expression
Journal Article
Molecular Microbiology, ISSN 0950-382X, 07/2016, Volume 101, Issue 1, pp. 152 - 166
Journal Article
Molecular Microbiology, ISSN 0950-382X, 08/2014, Volume 93, Issue 4, p. 736
  A Bradyrhizobium japonicum mutant defective in the gene encoding the high-affinity Mn2+ transporter MntH has a severe growth phenotype under manganese... 
Toxicity | Manganese compounds | Magnesium | Gram-negative bacteria | Molecular biology
Journal Article
Journal of Biological Chemistry, ISSN 0021-9258, 07/2016, Volume 291, Issue 30, pp. 15653 - 15662
Journal Article
Applied and Environmental Microbiology, ISSN 0099-2240, 08/2017, Volume 83, Issue 16
In this work we found that the bfr gene of the rhizobial species Ensifer meliloti, encoding a bacterioferritin iron storage protein, is involved in iron... 
Proteins | Oxidative stress | Homeostasis | Iron | Gram-negative bacteria | Bacterioferritin | Stress response | Gene expression | Ribonucleic acid--RNA | Boxes
Journal Article
Molecular Microbiology, ISSN 0950-382X, 08/2014, Volume 93, Issue 4, pp. 736 - 747
Journal Article
Molecular Microbiology, ISSN 0950-382X, 05/2014, Volume 92, Issue 3, p. 609
  Bradyrhizobium japonicum Irr is a conditionally stable transcriptional activator and repressor that accumulates in cells under iron-limited,... 
Genes | Iron | Gram-negative bacteria | Gene expression | Cells
Journal Article
Journal Article
Molecular Microbiology, ISSN 0950-382X, 04/2018, Volume 108, Issue 1, pp. 90 - 100
Summary Under iron limitation, bacteria scavenge ferric (Fe3+) iron bound to siderophores or other chelates from the environment to fulfill their nutritional... 
IRR PROTEIN | SIDEROPHORES | HEME | TRANSPORTERS | PSEUDOMONAS-AERUGINOSA | CHELATORS | BIOCHEMISTRY & MOLECULAR BIOLOGY | ESCHERICHIA-COLI | TONB | RECEPTOR | MICROBIOLOGY | GENE ENCODES | Nucleotide sequencing | DNA sequencing | Siderophores | Missense mutation | Genes | Bacteria | Periplasm | Iron | Mutation | Chelating agents | Chelates | Transporter | Membrane proteins
Journal Article
Journal Article
Journal of Bacteriology, ISSN 0021-9193, 06/2012, Volume 194, Issue 12, p. 3137
Utilization of heme as an iron source by Bradyrhizobium japonicum involves induction of the outer membrane heme receptor gene hmuR and other genes within the... 
RNA-protein interactions | Genetics | Iron | Gram-negative bacteria | Mutation | Gene expression
Journal Article
Molecular Microbiology, ISSN 0950-382X, 05/2012, Volume 84, Issue 4, pp. 766 - 777
Journal Article
Molecular Microbiology, ISSN 0950-382X, 05/2012, Volume 84, Issue 4, p. 766
Recent studies of Mn^2+ transport mutants indicate that manganese is essential for unstressed growth in some bacterial species, but is required primarily for... 
Microbiology | Gram-negative bacteria | Metabolism | Kinases | Chemicals | Cells
Journal Article
Journal of Bacteriology, ISSN 0021-9193, 08/2011, Volume 193, Issue 16, p. 4088
Iron utilization by bacteria in aerobic environments involves uptake as a ferric chelate from the environment, followed by reduction to the ferrous form.... 
Eukaryotes | E coli | Genes | Iron | Gene expression
Journal Article
BioMetals, ISSN 0966-0844, 04/2016, Volume 29, Issue 2, pp. 333 - 347
Ensifer meliloti is a nitrogen-fixing symbiont of the alfalfa legume able to use heme as an iron source. The transport mechanism involved in heme acquisition... 
Degradation | Proteins | Enzymes | Genes | Homology | In vitro testing | Iron | Recombinant
Journal Article