Abstract
Kinetics of radioactive iron transport from three structurally different secondary hydroxamate-iron chelates (schizokinen-iron, produced by Bacillus megaterium ATCC 19213; Desferal-iron, produced by an actinomycete; and aerobactin-iron, produced by Aerobacter aerogenes 62-1) revealed that B. megaterium SK11 (a mutant which cannot synthesize schizokinen) has a specific transport system for utilization of ferric hydroxamates with a recognition capacity based on the chemical structure of the hydroxamate. Both Desferal and schizokinen enhanced iron uptake in this organism; however, Desferal-iron delivered only one-sixth the level of iron incorporated from the schizokinen-iron chelate. Desferal-iron did not generate the rapid rates of iron transport noted with schizokinen-iron at elevated iron concentrations. Assays containing large excesses of either iron-free Desferal or iron-free schizokinen suggested that the iron-free hydroxamate may compete with the ferric hydroxamate for acceptance by the transport system although the system has greater affinity for the iron chelate. Aerobactin-iron did not stimulate iron uptake in B. megaterium SK11 and aerobactin inhibited growth of this organism, indicating that B. megaterium SK11 cannot efficiently process the aerobactin-iron chelate.
MeSH Terms
Bacillus megaterium/growth & development,metabolism
Biological Transport, Active
Chemical Phenomena
Chemistry
Electron Transport
Enterobacter/metabolism
Hydroxamic Acids/biosynthesis,metabolism
Iron/metabolism
Iron Chelating Agents/biosynthesis,metabolism
Iron Isotopes
Mutation
Streptomyces/metabolism
Chemicals
Hydroxamic Acids
Iron Chelating Agents
Iron Isotopes
Iron
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Haydon A H
Davis W B
Arceneaux J E
Byers B R
References (14)
14 references, click to expand
-
Simplified method for liquid scintillation counting of 55Fe using secondary hydroxamic acids as chelating agents.
Biochim Biophys Acta. 1972 Jun 26;273(1):1-4
PMID: 5038278
-
Iron uptake in Salmonella typhimurium: utilization of exogenous siderochromes as iron carriers.
J Bacteriol. 1972 Sep;111(3):731-8
PMID: 4559824
-
Iron-chelating hydroxamic acid (schizokinen) active in initiation of cell division in Bacillus megaterium.
J Bacteriol. 1967 Jan;93(1):286-94
PMID: 4960152
-
A schizokinen (siderochrome) auxotroph of Bacillus megaterium induced with N-methyl-N'-nitro-N-nitrosoguanidine.
Biochem Biophys Res Commun. 1966 Aug 12;24(3):370-5
PMID: 4961150
-
Hydroxamic acids in nature.
Science. 1967 Jun 16;156(3781):1443-7
PMID: 4304945
-
Permeability of Staphylococcus aureus to the Sideromycin antibiotic A 22,765.
Arch Mikrobiol. 1969 Oct;68(2):107-12
PMID: 5365771
-
Structure of schizokinen, an iron-transport compound from Bacillus megaterium.
Biochemistry. 1971 Dec 21;10(26):4894-8
PMID: 4332462
-
The isolation and characterization of a hydroxamic acid (aerobactin) formed by Aerobacter aerogenes 62-I.
Biochim Biophys Acta. 1969 Nov 18;192(2):175-84
PMID: 4313071
-
Iron requirements and aluminum sensitivity of an hydroxamic acid-requiring strain of Bacillus megaterium.
J Bacteriol. 1971 Feb;105(2):589-94
PMID: 4993339
-
Role of ferrichrome as a ferric ionophore in Ustilago sphaerogena.
Biochemistry. 1971 Apr 13;10(8):1483-8
PMID: 5580666
-
The mechanism of iron uptake in Bacillus subtilis.
Can J Microbiol. 1970 Dec;16(12):1285-91
PMID: 5000290
-
Active transport of iron in Bacillus megaterium: role of secondary hydroxamic acids.
J Bacteriol. 1971 Aug;107(2):491-8
PMID: 5000305
-
Transport of iron by mycobactin in Mycobacterium smegmatis.
Biochem Biophys Res Commun. 1971 Nov;45(4):856-62
PMID: 5117557
-
Repression of phenolic acid-synthesizing enzymes and its relation to iron uptake in Bacillus subtilis.
J Bacteriol. 1970 Jan;101(1):181-7
PMID: 4983647