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Biomedical subjects

J Knudsen

Publications and source records attributed to J Knudsen.

At least 145 records · Page 8Linked to original sources

Medium-chain fatty acid synthesis in lactating-rabbit mammary gland. Intracellular concentration and specificity of medium-chain acyl thioester hydrolase.

The concentration of medium-chain acyl thioester hydrolase and of fatty acid synthetase was determined by rocket immunoelectrophoresis in nine different particle-free supernatant fractions from lactating-rabbit mammary gland. The molar ratio of the hydrolase to fatty acid synthetase was 1.99 +/- 0.66 (mean +/- S.D.). A rate-limiting concentration of malonyl-CoA was required to ensure the predominant synthesis of medium-chain fatty acids when 2 mol of the hydrolase was added per mol of fatty acid synthetase. The interaction of the hydrolase with fatty acid synthetase was concentration-dependent, though an optimum concentration of hydrolase to synthetase could not be obtained. The lactating-rabbit mammary gland hydrolase altered the pattern of fatty acids synthesized by fatty acid synthetases prepared from cow, goat, sheep and rabbit lactating mammary glands, rabbit liver and cow adipose tissue.

Animals↗

Specificity of diacylglycerol acyltransferase from bovine mammary gland, liver and adipose tissue towards acyl-CoA esters.

1. Microsomal diacylglycerol acyltransferase from bovine lactating mammary gland, liver and adipose tissue was capable of acylating microsomal-bound 1,2-dipalmitolyglycerol with acyl-CoA of chain length C4--C18. 2. The activity of the liver and adipose enzymes towards butyryl-CoA and hexanoyl-CoA relative to longer-chain acyl-CoA was similar to that of the mammary enzyme. The Km and V values of the three enzymes with butyryl-CoA and hexanoyl-CoA were similar, except for the V values of the adipose enzyme which were higher. 3. Microsomal diacylglycerol acyltransferase from mammary gland and liver of non-ruminants was also capable of utilizing butyryl-CoA. 4. These results indicate that the unique presence of short-chain acids in ruminant milk triacylglycerols is not caused by differences in specificity between the diacylglycerol acyltransferase from ruminant mammary and other tissues.

Acyl Coenzyme A↗

Fatty-acid synthesis in lactating-goat mammary gland. 1. Medium-chain fatty-acid synthesis.

Tissue slices from lactating goat-mammary gland synthesized short (C4:0 and C6:0), medium (C8:0 and C10:0) and long-chain (C12:0 to C16:0) fatty acids in proportions similar to that found in goat milk fat. In contrast, the particle-free supernatant fraction and the purified fatty acid synthetase from this tissue synthesized predominantly short-chain and long-chain fatty acids. Terminating acyl-thioesterases of low molecular weight could not be detected in the particle-free supernatant. Addition of the microsomal fraction to the particle-free supernatant induced the synthesis of medium-chain fatty acids in proportions which were similar to those found in goat milk fat.

Acetyl Coenzyme A↗

Fatty-acid synthesis in lactating-goat mammary gland. 2. Medium-chain fatty acid synthesis.

Addition of goat, rat, rabbit and cow mammary microsomal fraction to fatty acid synthetase of goat mammary gland induced C10 fatty acid synthesis. When the microsomal fractions from rat, rabbit and cow mammary gland were incubated with their respective fatty acid synthetases only the cow enzyme synthesized significant amounts of C10 compared to the purified fatty acid synthetases alone. The goat mammary microsomal fraction was not able to induce C10 synthesis by rat and rabbit mammary-gland fatty acid synthetase, but only by the goat and cow enzyme. Both goat and cow mammary-gland fatty acid synthetase have in contrast to the rabbit and rat enzymes the ability to hydrolyse medium-chain acyl-thioesters. We therefore suggest a novel mechanism for medium-chain fatty acid synthesis in lactating-goat mammary gland. This mechanism involves an activation of the medium-chain acyl-thioester hydrolase within the fatty acid synthetase of goat mammary gland by an unknown microsomal factor.

Acetyl Coenzyme A↗

Molecular weight and subunit size of rabbit mammary-gland fatty acid synthetase.

1. The molecular weights of fatty acid synthetases isolated from lactating rabbit, rat, cow and goat mammary glands were estimated by sucrose gradient centrifugation and compared by chromatography on Sepharose 6B. 2. The values obtained for all four enzymes were in the same range (0.40 X 10(6)-0.55 X 10(6)) as that found for other mammalian and avian fatty acid synthetases. The molecular weight found for the rabbit mammary enzyme therefore differs from published values of approx. 0.9 X 10(6). 3. The molecular weights of the subunits of these four synthetases were 225000-242000. Again, the value for the rabbit mammary enzyme differs from published values.

Animals↗

Biosynthesis of triacylglycerols containing short-chain fatty acids in lactating cow mammary gland. Activity of diacylglycerol acyltransferase towards short-chain acyl-CoA esters.

1. Microsomal 1,2-diacylglycerol acyltransferase from lactating cow mammary gland incorporated equal molar amounts of microsomal-bound 1,2-dipalmitoyl [2-3H]glycerol and [1-14C]-butyrate, [1-14C]hexanoate or [1-14C]palmitate from their CoA esters into triacylglycerol. The enzyme could also utilize exogenous 1,2-diacylglycerols in the presence of ethanol. 2. The pH optimum of the enzyme was 6.1 and 6.4 with butyryl-CoA and hexanoyl-CoA respectively. Values of V were approximately the same (2.7 and 2.4 nmol-min-1-mg-1, respectively), but values of Km were different (34 and 10 muM, respectively) with these two substrates. Mg2+ was not required as cofactor. 3. The presence ofa Mg2+-dependent phosphatidate phosphatase in the microsomal fraction was demonstrated. 4. It is proposed that triacylglycerols containing butyric and hexanoic acid are biosynthesized in cow mammary gland by the glycerolphosphate pathway, in which long-chain 1,2-diacylglycerols derived from phosphatidic acid are acylated at the sn-3 position by short-chain acyl-CoA esters.

Acyltransferases↗

The specificity of 1-acyl-sn-glycerol 3-phosphate acyltransferase in microsomal fractions from lactating cow mammary gland towards short, medium and long chain acyl-CoA esters.

The 1-acylglycerolphosphate actyltransferase from a microsomal fraction of lactating cow mammary gland was active towards acyl-CoAs of chain length C8-C18, but not towards butyryl-CoA or hexanoyl-CoA. The lack of activity towards butyryl-CoA and hexanoyl-CoA explains why butyric and hexanoic acid are largely excluded from the sn-2 position of triacylglycerols from cow milk. The chain length specificity of the acyltransferase was C16 greater than C14 greater than C12 greater than C10 greater than C8, which is essentially the same as the order with which the fatty acids are found at the sn-2 position of cow milk triacylglycerols. The specificity was not affected by the nature of the fatty acid (palmitic or oleic acid) at the sn-1 position of 1-acylglycerolphosphate, as predicted by the theory of noncorrelative acylation.

Acyl Coenzyme A↗

Immunological properties of medium-chain acyl-thioester hydrolase and fatty acid synthetase from lactating-rabbit mammary gland.

The cytosol from lactating-rabbit mammary gland contains a medium-chain acyl-thioester hydrolase. This hydrolase terminates chain lengthening of the fatty acids synthesised by fatty acid synthetase so as to release C8:0 and C10:0 fatty acids which are characteristic of rabbit milk. The medium-chain hydrolase and the fatty acid synthetase present in this cytosol have been shown to be immunologically distinct. When fatty acid synthetase was purified from this cytosol it showed unexpected immunological reactivity towards antiserum raised to the medium-chain hydrolase. The precipitate formed was not due to fatty acid synthetase, but to medium-chain hydrolase contaminating the synthetase. However, the proportion of this medium-chain hydrolase which was recovered with the purified synthetase was too small to be detected by sodium dodecyl sulphate-polyacrylamide gel electrophoresis, and was too small to elicit an antibody response in sheep. Immunological techniques have shown that the medium-chain hydrolase appears in rabbit mammary gland between days 17 and 22 of pregnancy. This coincides with the onset of milk-fat synthesis. The medium-chain hydrolase could not be detected in the cytosol from lactating-rabbit liver.

Animals↗

Purification and some properties of a medium-chain acyl-thioester hydrolase from lactating-rabbit mammary gland which terminates chain elongation in fatty acid synthesis.

1. An acyl-thioester hydrolase was isolated from the cytosol of lactating-rabbit mammary gland. The purified enzyme terminates fatty acid synthesis at medium-chain (C8:0-C12:0) acids when it is incubated with fatty acid synthetase and rate-limiting concentrations of malonyl-CoA. These acids are characteristic products of the lactating gland. 2. The mol.wt. of the enzyme is 29000+/-500 (mean+/-S.D. of three independent preparations), as estimated by polyacrylamide-gel electrophoresis in the presence of sodium dodecyl sulphate. 3. The enzyme also hydrolyses acyl-CoA esters of chain lengths C10:0-C16:0 when these are used as model substrates. The greatest activity was towards dodecanoyl-CoA, and the three preparations had specific activities of 305, 1130 and 2010 nmol of dodecanoyl-CoA hydrolysed/min per mg of protein when 56muM substrate was used. 4. The way in which this enzyme controls the synthesis of medium-chain fatty acids by fatty acid synthetase is briefly discussed.

Albumins↗