» Articles » PMID: 177001

Phosphatidate Phosphohydrolase and Palmitoyl-coenzyme A Hydrolase in Cardiac Subcellular Fractions of Hyperthyroid Rabbits and Cardiomyopathic Hamsters

Overview
Journal Biochem J
Specialty Biochemistry
Date 1975 Nov 1
PMID 177001
Citations 9
Authors
Affiliations
Soon will be listed here.
Abstract

Activities of phosphatidate phosphohydrolase and palmitoyl-CoA hydrolase were determined in cardiac subcellular fractions prepared from rabbits which has received tri-iodothyronine and from hamsters with hereditary cardiomyopathy (strain BIO 14.6). 1. Both mitochondrial and microsomal fractions of hyperthyroid rabbit hearts produced 4-5 times as much diacylglycerol 3-phosphate from glycerol 3-phosphate and palmitate as did those of euthyroid hearts. 2. Phosphatidate phosphohydrolase, measured with phosphatidate emulsion, was activated by 1mm-Mg(2+) in all but the mitochondrial fraction of euthyroid rabbit hearts. The activation was more pronounced in subcellular fractions isolated from hyperthyroid hearts, so that the measured activities were significantly increased above those of the controls. The highest activity was found in the microsomal and lysosomal fractions. 3. In the absence of Mg(2+) during incubation, the difference in phosphohydrolase activities between eu- and hyper-thyroid states was not significant. 4. The phosphohydrolase of subcellular fractions of control hamsters did not respond to addition of 0.5-8.0mm-Mg(2+). The enzyme from cardiomyopathic hearts was slightly inhibited by this bivalent cation and therefore significant increases in activity were observed only in the absence of Mg(2+) from the assay system. 5. The rate of reaction by soluble phosphatidate phosphohydrolase was similar regardless of the nature of the substrate. Both when microsomal-bound phosphatidate was used as the substrate and when phosphatidate suspension was used, the activity of soluble enzyme was lower than that of the microsomal and lysosomal enzymes measured with phosphatidate suspension; this was especially so when the assay was carried out in the absence of Mg(2+). Neither tri-iodothyronine nor cardiomyopathy influenced the soluble phosphohydrolase activity in the two species. 6. Neither tri-iodothyronine nor cardiomyopathy significantly changed palmitoyl-CoA hydrolase activities in subcellular fractions. 7. Microsomal diacylglycerol acyltransferase and myocardial triacylglycerol content were also unchanged in the hyperthyroid state.

Citing Articles

Thyroxine regulation of monolysocardiolipin acyltransferase activity in rat heart.

Mutter T, Dolinsky V, Ma B, Taylor W, Hatch G Biochem J. 2000; 346 Pt 2:403-6.

PMID: 10677359 PMC: 1220866.


beta-Hydroxy fatty acid production by ischemic rabbit heart.

Moore K, Koen A, HULL F J Clin Invest. 1982; 69(2):377-83.

PMID: 6799549 PMC: 370987. DOI: 10.1172/jci110461.


Effect of high fat/high erucic acid diet on phosphatidate synthesis and phosphatidate phosphatase in the subcellular fractions of rat heart and liver.

Kako K, Peckett S Lipids. 1981; 16(1):23-9.

PMID: 6261075 DOI: 10.1007/BF02534917.


Microsomal phosphatidic acid phosphohydrolase of rat mammary tissue: I. General properties.

Tanaka K, Kinsella J Lipids. 1980; 15(1):26-32.

PMID: 6244475 DOI: 10.1007/BF02534114.


Effect of bovine serum albumin on monoacyl- and diacylglycerol 3-phosphate formation in mitochondrial and microsomal fractions of rabbit hearts.

Kako K Lipids. 1976; 11(10):713-7.

PMID: 994739 DOI: 10.1007/BF02533043.


References
1.
STAM Jr A, Shelburne J, Feldman D, SONNENBLICK E . A myocardial sarcolemma preparation and the ouabain-sensitive (Na plus-K plus)-ATPase. Biochim Biophys Acta. 1969; 189(2):304-7. DOI: 10.1016/0005-2728(69)90058-9. View

2.
de Jong J, Hulsmann W . A comparative study of palmitoyl-CoA synthetase activity in rat-liver, heart and gut mitochondrial and microsomal preparations. Biochim Biophys Acta. 1970; 197(2):127-35. DOI: 10.1016/0005-2728(70)90023-x. View

3.
Sottocasa G, Kuylenstierna B, Ernster L, Bergstrand A . An electron-transport system associated with the outer membrane of liver mitochondria. A biochemical and morphological study. J Cell Biol. 1967; 32(2):415-38. PMC: 2107253. DOI: 10.1083/jcb.32.2.415. View

4.
Kanoh H, Ohno K . Substrate-selectivity of rat liver microsomal 1,2-diacylglycerol: CDP-choline(ethanolamine) choline(ethanolamine)phosphotransferase in utilizing endogenous substrates. Biochim Biophys Acta. 1975; 380(2):199-207. View

5.
Christiansen K . Membrane-bounded lipid particles from beef heart acylglycerol synthesis. Biochim Biophys Acta. 1975; 380(3):390-402. DOI: 10.1016/0005-2760(75)90107-1. View