首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >Preparation of Chylomicrons and VLDL with Monoacid-Rich Triacylglycerol and Characterization of Kinetic Parameters in Lipoprotein Lipase-Mediated Hydrolysis in Chickens
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Preparation of Chylomicrons and VLDL with Monoacid-Rich Triacylglycerol and Characterization of Kinetic Parameters in Lipoprotein Lipase-Mediated Hydrolysis in Chickens

机译:富含一酸的三酰基甘油的乳糜微粒和超低密度脂蛋白的制备以及脂蛋白脂肪酶介导的水解动力学参数的表征

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To identify the substrate specificity of lipoprotein lipase (LPL) for triacylglycerol-rich lipoproteins with monoacid-rich triacylglycerols, monoacid-rich lipoproteins were prepared and kinetic parameters of LPL were characterized. Male broiler chickens were fed 8 g/100 g fat diets differing only in the fat source: palm oil (tripalmitin-rich), olive oil (triolein-rich), safflower oil (trilinolein-rich) and linseed oil (trilinolenin-rich). After diets were fed for 3 d, chickens were starved for 2 d and then force-fed emulsions containing one of the monoacid-triacylglycerols: tripalmitin, triolein, trilinolein or trilinolenin. The triacylglycerols in chylomicrons and very low density lipoprotein (VLDL) of chickens force-fed tripalmitin, triolein or trilinolein contained the corresponding acid at more than 70% of total acids. Linolenic acid was incorporated into chylomicrons and VLDL to a lower extent (51.2 and 57.2%, respectively) in chickens force-fed trilinolein. Major apolipoproteins and lipid compositions were not significantly different among all lipoproteins isolated from chickens fed the different fats. Vmax of LPL was significantly higher (P 0.05) for palmitic acid-rich chylomicrons and VLDL and decreased with increasing chain length and unsaturation of monoacid: 16:018:118:218:3. The electron spin resonance analysis, order parameter (S), decreased with monoacid chain length and unsaturation. In addition, the Vmax of LPL increased linearly (P 0.01, r = 0.912) with an increase in the palmitic acid content of the lipoprotein triacylglycerols. These findings suggest that lipoprotein catalysis by LPL is modulated by the palmitic acid content of the lipoprotein triacylglycerol, which affects the fluidity of lipoproteins.
机译:为了鉴定脂蛋白脂肪酶(LPL)对富含三酰基甘油的脂蛋白和富含单酸的三酰基甘油的底物特异性,制备了富含单酸的脂蛋白并表征了LPL的动力学参数。给雄性肉鸡饲喂8 g / 100 g脂肪日粮,仅在脂肪来源上有所不同:棕榈油(富含Tripalmitin),橄榄油(富含三油精),红花油(富含三亚麻油酸酯)和亚麻子油(富含Trilinolenin) 。喂食3天后,将鸡饿死2天,然后强行喂食含有以下一种酸的乳状液:三苯甲酸酯,三油精,三油精或三油精。鸡的乳糜微粒中的三酰基甘油和极低密度脂蛋白(VLDL)的强制饲喂三棕榈精,三油精或三油精含有相应的酸,占总酸的70%以上。在鸡强制饲喂的三亚麻油精中,将亚麻酸掺入乳糜微粒和VLDL中的程度较低(分别为51.2和57.2%)。在从饲喂不同脂肪的鸡中分离出的所有脂蛋白之间,主要载脂蛋白和脂质组成均无显着差异。对于富含棕榈酸的乳糜微粒和VLDL,LPL的Vmax明显更高(P <0.05),并且随着链长的增加和单酸的不饱和度的降低,Vmax降低(16:0> 18:1> 18:2> 18:3)。电子自旋共振分析的阶参数(S)随单酸链长度和不饱和度的降低而降低。此外,LPL的Vmax随脂蛋白三酰基甘油的棕榈酸含量的增加而线性增加(P <0.01,r = 0.912)。这些发现表明,LPL催化脂蛋白受脂蛋白三酰基甘油的棕榈酸含量调节,这会影响脂蛋白的流动性。

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