首页> 外文期刊>The Journal of Experimental Biology >The substrate specificity of hormone-sensitive lipase from adipose tissue of the Antarctic fish Trematomus newnesi
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The substrate specificity of hormone-sensitive lipase from adipose tissue of the Antarctic fish Trematomus newnesi

机译:南极鱼类Trematomus newnesi脂肪组织中激素敏感性脂肪酶的底物特异性

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摘要

Antarctic fishes of the suborder Notothenioidei characteristically possess large stores of neutral lipids that have been shown to be important both in conferring buoyant lift and as a caloric resource for energy metabolism. Previous; work has established that the aerobic energy metabolism of Antarctic fish is fueled predominantly by the catabolism of fatty acids, with the catabolic machinery displaying a preference for the oxidation of unsaturated fatty acids. The composition of the fatty acids released from adipose tissue of Antarctic fish during lipolysis, however, has not previously been demonstrated. Employing a substrate competition assay, we have characterized the substrate specificity of hormone-sensitive lipase (HSL) from adipose tissue of the Antarctic fish Trematomus newnesi. Rates of oleic acid release from radiolabeled triolein were quantified in the presence and absence of a nonradiolabeled cosubstrate. Polyunsaturated species of triacylglycerols (TAGs) containing 18:2 or 20:4 depressed rates of oleate release by 70-75% below control values. Most of the molecular species of TAG containing monoenoic fatty acids (i.e. those containing 14:1, 16:1 or 20:1) had no significant effect on rates of oleate release. By contrast, oleate release from triolein was actually stimulated (by 2-4-fold) by both saturated species of TAG (i.e. those containing 14:0, 16:0 and 18:0) and those possessing long-chain (22:1 and 24:1) monoenes (by 1.2-1.5-fold). Thus, the rank order of substrate preference for adipose tissue HSL was: polyunsaturates > monoenes > saturates. Degree of fatty acid unsaturation had a more marked effect on rates of hydrolysis than did fatty acid chain length. In addition, the enzyme displayed a preference for the hydrolysis of sn-1,2 rather than sn-1,3 diacylglycerols. These data indicate that the substrate specificity of adipose tissue HSL may be an important factor in determining which fatty acids are mobilized during stimulated lipolysis and which are made available for catabolism by other tissues of Antarctic fishes. Our data further suggest that TAGs containing some saturated fatty acids may be sufficiently poor substrates for catabolism by HSL to explain their disproportionate accumulation in adipose tissue. Such a mechanism could also contribute to the ontogenetic accumulation of fats that has been reported as an underlying basis for the positive correlation of buoyancy with increasing body mass in this group. [References: 25]
机译:Notothenioidei亚阶的南极鱼具有大量的中性脂质,这些中性脂质已被证明在赋予浮力和作为能量代谢的热量资源上都非常重要。以前;工作已经确定,南极鱼类的有氧能量代谢主要由脂肪酸的分解代谢提供,分解代谢机制显示出对不饱和脂肪酸氧化的偏好。但是,以前尚未证明脂解过程中从南极鱼类脂肪组织释放的脂肪酸的组成。采用底物竞争测定法,我们已经表征了南极鱼Trematomus newnesi脂肪组织中激素敏感性脂肪酶(HSL)的底物特异性。在存在和不存在未放射性标记的共底物的情况下,对从放射性标记的油质蛋白释放的油酸速率进行定量。含有18:2或20:4的三酰基甘油(TAG)的多不饱和物种使油酸盐的释放速率降低了70-75%,低于控制值。含有单烯脂肪酸的TAG的大多数分子种类(即含有14∶1、16∶1或20∶1的那些)对油酸盐的释放速率没有显着影响。相比之下,TAG的饱和物种(即那些包含14:0、16:0和18:0的物种)和那些具有长链(22:1)的物种实际上刺激了三油精的油酸盐释放(2-4倍)。和24:1)单烯(降低1.2-1.5倍)。因此,对于脂肪组织HSL,底物偏好的等级顺序为:多不饱和酸酯>单烯>饱和酸酯。与脂肪酸链长相比,脂肪酸不饱和度对水解速率的影响更大。此外,该酶显示出对sn-1,2而不是sn-1,3二酰基甘油水解的偏爱。这些数据表明,脂肪组织HSL的底物特异性可能是决定哪些脂肪在刺激的脂解过程中动员的脂肪酸以及哪些可用于南极鱼类其他组织分解代谢的重要因素。我们的数据进一步表明,含有某些饱和脂肪酸的TAGs对于HSL的分解代谢而言可能是足够差的底物,以解释它们在脂肪组织中不成比例的积累。这种机制也可能促进脂肪的本体积累,据报道,这是该组浮力与体重增加呈正相关的基础。 [参考:25]

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