Literature DB >> 833130

Direct desaturation of eicosatrienoyl lecithin to arachidonoyl lecithin by rat liver microsomes.

E L Pugh, M Kates.   

Abstract

A microsomal enzyme system from rat liver was shown to catalyze desaturation, in presence of reduced pyridine nucleotides and oxygen, of 1-acyl-2-[14C]eicosatrienoyl-sn-glycero-3-phosphorylcholine to 1-acyl-2-[14C]arachidonoyl-sn-glycerophosphorylcholine. This desaturation was linear with time and proportional to microsomal protein concentration, and proceeded with no significant breakdown of the lecithin substrate. The microsomal enzyme system will also desaturate 1,2-di-[14C]eicosatrienoyl-sn-glycero-3-phosphorylcholine and [14C]eicosatrienoyl-CoA, but not free [1-14C]eicosatrienoic acid in the absence of ATP, Mg2+, and CoA. Desaturation of 1-acyl-2-[14C]eicosatrienoyl-glycerophosphorylcholine as well as [14C]eicosatrienoyl-CoA was dependent on oxygen and either NADH or NADPH, and was inhibited by cyanide but not by carbon monoxide, indicating the involvement of cytochrome b5 and not P450. The activity of both eicosatrienoyl-glycerophosphorylcholine desaturase and the eicosatrienoyl-CoA desaturase was increased in rats that had been starved for 48 h and refed a fat-free diet. These data indicate the existence of a new route to synthesis of arachidonate, namely, by desaturation of eicosatrienoyl lecithin to arachidonoyl lecithin.

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Year:  1977        PMID: 833130

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  21 in total

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6.  The dietary regulation of acyltransferase and desaturase activities in microsomal membranes of rat liver.

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7.  The effect of dietary partially hydrogenated marine oils on desaturation of fatty acids in rat liver microsomes.

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8.  Fatty acid biosynthesis in the leaves of barley, wheat and pea.

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9.  Effects of saturated fatty acids on n-6 fatty acid metabolism in cultured human monocyte-like cells (U937).

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10.  Transgenic expression of n-3 fatty acid desaturase (fat-1) in C57/BL6 mice: Effects on glucose homeostasis and body weight.

Authors:  Shaonin Ji; Robert W Hardy; Philip A Wood
Journal:  J Cell Biochem       Date:  2009-07-01       Impact factor: 4.429

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