Abstract
Kinetic studies of the uptake of 63Ni were undertaken with two strains of Alcaligenes eutrophus, known to require nickel ions for chemolithotrophic growth. Using carbon dioxide as sole carbon source, growth is stimulated by low concentrations of nickel with optimum concentration for growth stimulation at about 0.3 micron nickel. Higher nickel concentrations were inhibitory. Heterotrophic growth on fructose was not stimulated by nickel ions.--Upon transfer into phosphate buffer freed of heavy metal ions, autotrophically grown cells exhibited rapid uptake of 63Ni which was dependent upon the presence of hydrogen, oxygen and carbon dioxide. Within 60 min nickel was accumulated from the medium, reaching 280-fold concentration in the cells. The observed uptake exhibited a temperature optimum at about 29 degrees C and was markedly inhibited by metabolic inhibitors such as arsenite, iodoacetate, methylene-blue, sodium azide and sodium cyanide. Other heavy metal ions (Zn, Co, Mn and Cu) only slightly inhibited 63Ni-uptake. The efflux of 63Ni from the cells was stimulated by 58NiCl2 and by toluene. These data indicate that nickel ions are accumulated by an energy dependent mechanism in chemolithotrophically grown cells of these strains.
MeSH Terms
Alcaligenes/metabolism
Arsenic/pharmacology
Azides/pharmacology
Biological Transport, Active/drug effects
Carbon Dioxide/metabolism
Cyanides/pharmacology
Fructose/metabolism
Iodoacetates/pharmacology
Methylene Blue/pharmacology
Nickel/metabolism
Radioisotopes
Temperature
Chemicals
Azides
Cyanides
Iodoacetates
Radioisotopes
Carbon Dioxide
Fructose
Nickel
Arsenic
Methylene Blue
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Tabillion R
Kaltwasser H
References (18)
18 references, click to expand
-
Proceedings: Nickel: a new essential trace element.
Fed Proc. 1974 Jun;33(6):1767-72
PMID: 4827528
-
The Specific Potency of Certain Cations with Reference to Their Effect on Bacterial Viability.
J Bacteriol. 1931 Jul;22(1):49-69
PMID: 16559504
-
[A submersion method for culture of hydrogen-oxidizing bacteria: growth physiological studies].
Arch Mikrobiol. 1961;38:209-22
PMID: 13747777
-
The effect of nickel on a marine bacterium, Arthrobacter marinus sp.nov.
J Gen Microbiol. 1970 Aug;62(2):159-69
PMID: 5493594
-
Preparation of cells permeable to macromolecules by treatment with toluene: studies of transfer ribonucleic acid nucleotidyltransferase.
J Bacteriol. 1974 May;118(2):633-9
PMID: 4597454
-
Isolation of a nickel alpha 2-macroglobulin from rabbit serum.
Biochemistry. 1971 Apr 27;10(9):1647-51
PMID: 5580676
-
An outer metabolic region of the yeast cell.
Biochem J. 1950 Sep;47(3):347-55
PMID: 14800892
-
Magnesium transport in Escherichia coli. Inhibition by cobaltous ion.
J Biol Chem. 1971 May 10;246(9):3042-9
PMID: 4928897
-
Energy-dependent zinc transport by escherichia coli.
Eur J Biochem. 1974 Jun 15;45(2):555-9
PMID: 4604430
-
[Studies on growth and synthesis of stored substance by Hydrogenomonas].
Arch Mikrobiol. 1962;43:109-37
PMID: 14042378
-
Isotopic method for estimating microbial cell volumes.
J Bacteriol. 1966 Sep;92(3):639-44
PMID: 4958775
-
The transport of Zn2+, Co2+ and Ni2+ into yeast cells.
Biochim Biophys Acta. 1968 Nov 5;163(3):325-30
PMID: 5721896
-
The mechanism of the partial inhibition of fermentation in yeast by nickel ions.
Biochim Biophys Acta. 1968 Nov 5;163(3):331-8
PMID: 4301821
-
NICKEL-DEPENDENT CHEMOLITHOTROPHIC GROWTH OF TWO HYDROGENOMONAS STRAINS.
J Bacteriol. 1965 Apr;89:1015-9
PMID: 14276088
-
THE ROLE OF POLYPHOSPHATES IN THE TRANSPORT MECHANISM OF GLUCOSE IN YEAST CELLS.
J Gen Physiol. 1964 Sep;48:43-60
PMID: 14212149
-
Behaviour of enzymes at high concentration. Use of permeabilised cells in the study of enzyme activity and its regulation.
FEBS Lett. 1973 Jun 1;32(2):247-50
PMID: 4354811
-
[CAROTENOIDS IN THIORHODACEAE. I. OKENONEAS THE PRINCIPAL CAROTENOID IN CHROMATIUM OKENII PERTY].
Arch Mikrobiol. 1963 Aug 1;46:117-26
PMID: 14044829
-
[Physiological studies on the chemolithotropic metabolism of recently isolated Hydrogenomonas strains].
Arch Mikrobiol. 1962;41:313-50
PMID: 13865418