Abstract
1. Acetoacetate or dl-beta-hydroxybutyrate increases the rate of oxygen consumption to a smaller extent than that brought about by glucose or pyruvate in adult rat brain-cortex slices but to the same extent as that in infant rat brain-cortex slices. 2. The rate of (14)CO(2) evolution from [1-(14)C]glucose considerably exceeds that from [6-(14)C]glucose in respiring infant rat brain-cortex slices, in contrast with adult brain-cortex slices, suggesting that the hexose monophosphate shunt operates at a greater rate in the infant rat brain than in the adult rat brain. 3. The rate of (14)CO(2) evolution from [3-(14)C]acetoacetate or dl-beta-hydroxy[3-(14)C]butyrate, in the absence of glucose, is the same in infant rat brain slices as in adult rat brain slices. It exceeds that from [2-(14)C]glucose in infant rat brain but is less than that from [2-(14)C]glucose in adult rat brain. 4. Acetoacetate is oxidized in the brain through the operation of the citric acid cycle, as shown by the accelerating effect of glucose on acetoacetate oxidation in adult brain slices, by the inhibitory effects of malonate in both infant and adult brain slices and by its conversion into glutamate and related amino acids in both tissues. 5. Acetoacetate does not affect glucose utilization in adult or infant brain slices. It inhibits the rate of (14)CO(2) formation from [2-(14)C]glucose or [U-(14)C]-glucose the effect not being wholly due to isotopic dilution. 6. Acetoacetate inhibits non-competitively the oxidation of [1-(14)C]pyruvate, the effect being attributed to competition between acetyl-CoA and CoA for the pyruvate-oxidation system. 7. Acetoacetate increases the rate of aerobic formation of lactate from glucose with both adult and infant rat brain slices. 8. The presence of 0.1mm-2,4-dinitrophenol diminishes but does not abolish the rate of (14)CO(2) formation from [3-(14)C]acetoacetate in rat brain slices. This points to the participation of ATP in the process of oxidation of acetoacetate in infant or adult rat brain. 9. The presence of 5mm-d-glutamate inhibits the rate of (14)CO(2) formation from [3-(14)C]acetoacetate, in the presence or absence of glucose. 10. Labelled amino acids are formed from [3-(14)C]acetoacetate in both adult and infant rat brain-cortex slices, but the amounts are smaller than those found with [2-(14)C]glucose in adult rat brain and greater than those found with [2-(14)C]glucose in infant rat brain. 11. Acetoacetate is not as effective as glucose as a precursor of acetylcholine in adult rat brain but is as effective as glucose in infant rat brain slices. 12. Acetoacetate or beta-hydroxybutyrate is a more potent source of acetyl-CoA than is glucose in infant rat brain slices but is less so in adult rat brain slices.
MeSH Terms
Acetoacetates/metabolism
Acetylcholine/biosynthesis
Adenosine Triphosphate/metabolism
Age Factors
Animals
Animals, Newborn
Brain/metabolism
Carbon Dioxide/metabolism
Carbon Isotopes
Citric Acid Cycle
Coenzyme A/biosynthesis,metabolism
Dinitrophenols/pharmacology
Female
Glucose/metabolism
Hydroxybutyrates/metabolism
In Vitro Techniques
Lactates/biosynthesis
Male
Malonates/metabolism
Metabolism/drug effects
Oxygen Consumption
Pyruvates/metabolism
Rats
Chemicals
Acetoacetates
Carbon Isotopes
Dinitrophenols
Hydroxybutyrates
Lactates
Malonates
Pyruvates
Carbon Dioxide
Adenosine Triphosphate
Glucose
Acetylcholine
Coenzyme A
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Ito T
Quastel J H
References (27)
27 references, click to expand
-
Respiration and phosphorylation in preparations from Mammalian Brain.
Biochem J. 1951 Jan;48(1):1-11
PMID: 14820776
-
[The relation of acetacetic acid and age to the amount of glycogen and the formation of lactic acid in the rat brain].
Sb Lek. 1968 Jul;70(7):222-7
PMID: 5690763
-
Oxidation of glucose, acetoacetate, and palmitate in brain mince of normal and ketotic rats.
Diabetes. 1968 Feb;17(2):90-5
PMID: 5635729
-
Quantitative histochemical changes during the development of the rat cerebral cortex.
J Neurochem. 1956 Dec;1(2):173-80
PMID: 13398834
-
Acetoacetate as fuel of respiration in the perfused rat heart.
Biochem J. 1961 Sep;80:540-7
PMID: 13785549
-
Amino acid transport in brain cortex slices. I. The relation between energy production and the glucose-dependent transport of glycine.
Can J Biochem Physiol. 1962 Nov;40:1575-90
PMID: 14010520
-
Amino acid transport in brain cortex slices. III. The utilization of energy for transport.
Can J Biochem Physiol. 1962 Nov;40:1603-18
PMID: 14010522
-
Some observations on the effect of D-glutamate on the glucose metabolism and the accumulation of potassium ions in brain cortex slices.
J Neurochem. 1959 Jun;4(2):124-34
PMID: 13665373
-
Effects of fatty acids, ketone bodies, lactate and pyruvate on glucose utilization by guinea-pig cerebral cortex slices.
Biochem J. 1967 Aug;104(2):519-23
PMID: 6048793
-
Ammonia formation in brain. I. Studies on slices and suspensions.
Biochem J. 1955 Oct;61(2):210-8
PMID: 13260200
-
Biochemical and physiological differentiation during morphogenesis. XVI. Cytochrome oxidase, succinic dehydrogenase and succinoxidase in the developing cerebral cortex and liver of the fetal guinea pig.
J Cell Physiol. 1953 Aug;42(1):151-61
PMID: 13084712
-
Determination of 14C-labelled ketone bodies by liquid-scintillation counting.
Biochem J. 1967 Jan;102(1):230-5
PMID: 6030286
-
Enzymatic synthesis of citric acid. I. Synthesis with soluble enzymes.
J Biol Chem. 1951 Jul;191(1):161-72
PMID: 14850456
-
Transport and metabolism of acetate in rat brain cortex in vitro.
Biochem J. 1966 Jul;100(1):83-94
PMID: 5966540
-
THE EFFECT OF ACETOACETATE ON OXYGEN CONSUMPTION OF BRAIN SLICES FROM INFANT AND ADULT RATS.
Physiol Bohemoslov. 1965;14:134-6
PMID: 14301219
-
Brain metabolism during fasting.
J Clin Invest. 1967 Oct;46(10):1589-95
PMID: 6061736
-
Studies on the fatty acid oxidizing system of animal tissues. VII. The beta-ketoacyl coenzyme A cleavage enzyme.
J Biol Chem. 1954 May;208(1):345-57
PMID: 13174544
-
Active transport of amino acid into cerebral cortex slices.
J Neurochem. 1963 Apr;10:241-56
PMID: 13994558
-
THE EFFECTS OF SHORT-CHAIN FATTY ACIDS AND STARVATION ON THE METABOLISM OF GLUCOSE AND LACTATE BY THE PERFUSED GUINEA PIG HEART.
Can J Biochem. 1964 Nov;42:1605-21
PMID: 14245255
-
Effects of acetylsalicylate and 2, 4-dinitrophenol on metabolism and transport in rat brain cortex in vitro.
Can J Biochem Physiol. 1963 Feb;41:435-54
PMID: 13948978
-
The fate of isotopic carbon in kidney cortex synthesizing glucose from lactate.
Biochem J. 1966 Oct;101(1):242-9
PMID: 5971786
-
L-glutamic acid dehydrogenase; structural requirements for substrate competition; effect of thyroxine.
J Biol Chem. 1957 Jan;224(1):591-607
PMID: 13398432
-
On the mechanism of acetylcholine formation in brain in vitro.
Biochem J. 1938 Feb;32(2):243-61
PMID: 16746614
-
(14C) acetylcholine synthesis by cortex slices of rat brain.
J Neurochem. 1968 Dec;15(12):1391-405
PMID: 5729420
-
Intracellular Cl-, Na+, K+, Ca2+, Mg2+, and P in nervous tissue; response to glutamate and to changes in extracellular calcium.
J Neurochem. 1967 Feb;14(2):145-59
PMID: 6020704
-
Studies on brain metabolism: The metabolism of glutamic acid in brain.
Biochem J. 1936 Apr;30(4):665-76
PMID: 16746068
-
Metabolism of amino-acids: The synthesis of glutamine from glutamic acid and ammonia, and the enzymic hydrolysis of glutamine in animal tissues.
Biochem J. 1935 Aug;29(8):1951-69
PMID: 16745865