Abstract
Klebsiella aerogenes NCIB 418 assimilates glycerol via alternative pathways: one involves a glycerol kinase with a high affinity for glycerol (apparent Km = 1-2x10(-6)M), and the second a glycerol dehydrogenase with a much lower affinity for its substrate (apparent Km=2-4x10(-2)M). In variously-limited chemostat cultures, one or the other pathway predominated. Thus, aerobic carbon-limited organisms contained only the glycerol kinase pathway whereas aerobic sulphate-limited or ammonia-limited organisms (grown on glycerol) used only the glycerol dehydrogenase pathway. Anaerobic cultures invariably contained glycerol dehydrogenase, and glycerol kinase was absent. Washed suspensions of aerobically-grown organisms oxidized glycerol with kinetics similar to that of the particular enzyme (the primary enzyme of the assimilatory pathway) which they possessed, thus indicating a close association between these two enzymes and the uptake process. But a supply of exogenous glycerol was not a prerequisite for the synthesis of either glycerol kinase or glycerol dehydrogenase, and nor was molecular oxygen the key factor in effecting modulation between the alternative pathways of glycerol metabolism, as had been previously suggested. The physiological significance of dual pathways of glycerol assimilation is discussed.
MeSH Terms
Aerobiosis
Alcohol Oxidoreductases/metabolism
Ammonia/metabolism
Anaerobiosis
Cations, Monovalent
Enterobacter/metabolism
Glucose/metabolism
Glycerol/metabolism
Glycerol Kinase/metabolism
Kinetics
Sulfates/metabolism
Chemicals
Cations, Monovalent
Sulfates
Ammonia
Alcohol Oxidoreductases
Glycerol Kinase
Glucose
Glycerol
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Neijssel O M
Hueting S
Crabbendam K J
Tempest D W
References (12)
12 references, click to expand
-
Glycerol kinase, the pacemaker for the dissimilation of glycerol in Escherichia coli.
J Bacteriol. 1970 Jun;102(3):753-9
PMID: 4914079
-
Oxidative phosphorylation in bacteria which contain different cytochrome oxidases.
Eur J Biochem. 1973 Jul 2;36(1):144-51
PMID: 4354617
-
The effects of beta-galactosidase activity and cyclic AMP on lactose-accelerated death.
J Gen Microbiol. 1974 Nov;85(1):85-90
PMID: 4373526
-
The effect of aerobic metabolism on the inducible glycerol dehydrogenase of Aerobacter aerogenes.
J Biol Chem. 1960 Jun;235:1824-9
PMID: 14417008
-
The activation of glycerol dehydrogenase from Aerobacter aerogenes by monovalent cations.
J Biol Chem. 1960 Jun;235:1820-3
PMID: 14417009
-
Pathways of glycerol dissimilation in two strains of Aerobacter aerogenes; enzymatic and tracer studies.
J Biol Chem. 1957 Jun;226(2):891-9
PMID: 13438878
-
Transport of magnesium by a repressible and a nonrepressible system in Escherichia coli.
Proc Natl Acad Sci U S A. 1972 May;69(5):1091-3
PMID: 4556454
-
THE CONTROL OF DISSIMILATION OF GLYCEROL AND L-ALPHA-GLYCEROPHOSPHATE IN ESCHERICHIA COLI.
J Biol Chem. 1964 Sep;239:3106-8
PMID: 14217903
-
CAPTURE OF GLYCEROL BY CELLS OF ESCHERICHIA COLI.
Biochim Biophys Acta. 1965 Mar 29;94:479-87
PMID: 14314355
-
Synthesis of glutamate in Aerobacter aerogenes by a hitherto unknown route.
Biochem J. 1970 Apr;117(2):405-7
PMID: 5420057
-
The chemostat: design and instrumentation.
Lab Pract. 1965 Oct;14(10):1150-61
PMID: 5318988
-
ACCELERATED DEATH OF AEROBACTER AEROGENES STARVED IN THE PRESENCE OF GROWTH-LIMITING SUBSTRATES.
J Gen Microbiol. 1964 Mar;34:459-73
PMID: 14135550