Abstract
1. The subcellular distribution and maturation of Ruthenium Red-insensitive Ca(2+) transport activity were determined in livers of rats ranging in age from 3 days pre-term to 10 weeks of adult life and compared with those of glucose 6-phosphatase, 5'-nucleotidase and Ruthenium Red-sensitive Ca(2+) transport. Initial rates of Ruthenium Red-insensitive Ca(2+) transport were highest in those fractions enriched in glucose 6-phosphatase, i.e. the microsomal fraction; this fraction was devoid of Ruthenium Red-sensitive Ca(2+) transport activity. Although the heaviest fraction (nuclear) contained significant amounts of 5'-nucleotidase activity it was devoid of Ruthenium Red-insensitive Ca(2+) transport activity. 2. Foetal rat liver contain minimal amounts of Ruthenium Red-insensitive Ca(2+) transport activity, glucose 6-phosphatase and 5'-nucleotidase activities. These begin to be expressed concomitantly soon after birth; Ruthenium Red-insensitive Ca(2+) transport is maximal by 3 to 4 days and remains so for up to at least 10 weeks of adult life. Glucose 6-phosphatase also reaches a peak at 3-4 days, but then rapidly decreases to approach adult values. Maximal activity of 5'-nucleotidase in the microsomal and nuclear fractions is seen about 4-6 days after birth; this enzyme activity remains increased for up to about 10 days and then falls, but not as rapidly as glucose 6-phosphatase. It is tentatively suggested that the bulk of the Ruthenium Red-insensitive Ca(2+) transport is attributable to the system derived from the endoplasmic reticulum. 3. Administration of glucagon to adult rats enhances by 2-3-fold the initial rate of Ruthenium Red-insensitive Ca(2+) transport in the intermediate but not the microsomal fraction. The hormone-induced effect is fully suppressed by co-administration of puromycin, is dose-dependent with half-maximal response at approx. 1mug of glucagon/100g body wt. and time-dependent exhibiting a half-maximal response about 1h after administration of the hormone. 4. Ruthenium Red-insensitive Ca(2+) transport in the post-mitochondrial fraction of foetal liver also responds to the administration in situ of glucagon. The response, which also is prevented by co-administration of puromycin, is maximal in those foetuses nearing term. The suggestion is made that these effects of the hormone on Ruthenium Red-insensitive Ca(2+) transport are an integral part of the physiological network in the liver cell.
MeSH Terms
Animals
Biological Transport/drug effects
Calcium/metabolism
Fetus/metabolism
Glucagon/pharmacology
Glucose-6-Phosphatase/metabolism
In Vitro Techniques
Liver/drug effects,growth & development,metabolism
Puromycin/pharmacology
Rats
Ruthenium/pharmacology
Ruthenium Red/pharmacology
Subcellular Fractions/drug effects,metabolism
Chemicals
Ruthenium Red
Puromycin
Ruthenium
Glucagon
Glucose-6-Phosphatase
Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Bygrave F L
Tranter C J
References (23)
23 references, click to expand
-
ON THE ROLE OF UBIQUINONE IN MITOCHONDRIA. SPECTROPHOTOMETRIC AND CHEMICAL MEASUREMENTS OF ITS REDOX REACTIONS.
Biochem Z. 1963;338:674-97
PMID: 14087334
-
Stimulation of hepatic mitochondrial calcium transport by elevated plasma insulin concentrations.
Biochem J. 1975 Sep;150(3):389-95
PMID: 1212198
-
Phosphorylated proteins as physiological effectors.
Science. 1978 Jan 13;199(4325):146-52
PMID: 22932
-
Mitochondria and the control of intracellular calcium.
Biol Rev Camb Philos Soc. 1978 Feb;53(1):43-79
PMID: 27255
-
Energy-dependent calcium transport in endoplasmic reticulum of adipocytes.
J Biol Chem. 1976 Nov 25;251(22):7191-7
PMID: 11219
-
Membrane phosphorylation and calcium transport in cardiac and skeletal muscle membranes.
Gen Pharmacol. 1976 Oct;7(5):313-9
PMID: 185123
-
Development of sarcoplasmic reticulum in cultured chicken muscle.
J Biol Chem. 1977 Jan 10;252(1):318-32
PMID: 401812
-
Submitochondrial location of ruthenium red-sensitive calcium-ion transport and evidence for its enrichment in a specific population of rat liver mitochondria.
Biochem J. 1978 Sep 15;174(3):1011-9
PMID: 728072
-
Properties of energy-dependent calcium transport by rat liver microsomal fraction as revealed by initial-rate measurements.
Biochem J. 1978 Jan 15;170(1):87-91
PMID: 629785
-
Development of mitochondrial calcium transport activity in rat liver.
FEBS Lett. 1977 Aug 15;80(2):271-4
PMID: 891978
-
Ruthenium red as a probe in assessing the potential of mitochondria to control intracellular calcium in liver.
FEBS Lett. 1977 Jun 15;78(2):166-8
PMID: 885240
-
Subcellular fractionation of rat liver.
Methods Enzymol. 1974;31:6-41
PMID: 4138239
-
Initiation by glucagon of the premature development of tyrosine aminotransferase, serine dehydratase, and glucose-6-phosphatase in fetal rat liver.
J Biol Chem. 1967 Jun 25;242(12):2986-91
PMID: 4381768
-
The inhibition of mitochondrial calcium transport by lanthanides and ruthenium red.
Biochem J. 1974 May;140(2):143-55
PMID: 4375957
-
The developmental formation of liver glucose 6-phosphatase and reduced nicotinamide adenine dinucleotide phosphate dehydrogenase in fetal rats treated with thyroxine.
J Biol Chem. 1968 May 25;243(10):2745-9
PMID: 4385079
-
Specific inhibition of mitochondrial Ca++ transport by ruthenium red.
Biochem Biophys Res Commun. 1971 Jan 22;42(2):298-305
PMID: 4250976
-
The effect of ruthenium red on Ca 2+ transport and respiration in rat liver mitochondria.
Biochim Biophys Acta. 1972 Jan 21;256(1):43-54
PMID: 4257941
-
Studies on plasma membranes. 3. Mg2+-ATPase,(Na+-K+-Mg2+)-ATPase and 5'-nucleotidase activity of plasma membranes isolated from rat liver.
Biochim Biophys Acta. 1966 Jul 13;120(3):369-82
PMID: 4226064
-
Characterization of calcium binding to adipocyte plasma membranes.
J Biol Chem. 1976 Sep 10;251(17):5345-51
PMID: 8462
-
Glucagon stimulation of mitochondrial respiration.
J Biol Chem. 1975 Oct 10;250(19):7924-30
PMID: 240844
-
Factors affecting the secretion of insulin and glucagon by the rat fetus.
Diabetes. 1974 Apr;23(4):310-7
PMID: 4823911
-
Energy-dependent calcium sequestration activity in rat liver microsomes.
J Biol Chem. 1975 Jun 25;250(12):4562-8
PMID: 806589
-
Changes in patterns of enzymes of carbohydrate metabolism in the developing rat liver.
J Biol Chem. 1963 Jul;238:2267-73
PMID: 14016891