Chen Q, Bläckberg L, Nilsson A, Sternby B, Hernell O
Department of Medicine, University of Lund, Sweden.
Biochim Biophys Acta. 1994 Jan 3;1210(2):239-43. doi: 10.1016/0005-2760(94)90127-9.
To assess the role of human milk bile salt-stimulated lipase (BSSL) in the digestion of polyunsaturated ester bonds of triacylglycerols, hydrolysis of docosahexaenoic acid (22:6(n-3)) ester bonds was compared to that of oleic acid (18:1(n-9)) or arachidonic acid (20:4(n-6)) esters. As model substrates, we used rat chylomicrons obtained after feeding human milk fat globules and radiolabeled fatty acids. Radiolabeled chylomicrons were incubated with colipase-dependent pancreatic lipase, with BSSL, or with both enzymes in combination. Both enzymes hydrolyzed 18:1 more efficiently than 22:6 esters. With colipase-dependent lipase there was a large accumulation of 22:6 in diacylglycerol whereas with BSSL it accumulated mainly in monoacylglycerol. Esters containing 20:4 were hydrolyzed by BSSL as efficiently as 18:1 but this fatty acid also accumulated as diacylglycerol with colipase-dependent lipase. At low bile salt concentrations, as found in duodenal contents of newborns, colipase-dependent lipase was virtually unable to hydrolyze esters of 20:4 and 22:6 whereas BSSL hydrolyzed these esters at appreciable rates. Combining the two enzymes gave the most efficient hydrolysis of all fatty acids tested regardless of bile salt concentrations. BSSL may thus have a physiological role in completing duodenal hydrolysis of milk triacylglycerols containing 22:6- or 20:4-esters to free fatty acids and monoacylglycerol.
为评估人乳胆汁盐刺激脂肪酶(BSSL)在三酰甘油多不饱和酯键消化中的作用,将二十二碳六烯酸(22:6(n-3))酯键的水解与油酸(18:1(n-9))或花生四烯酸(20:4(n-6))酯的水解进行了比较。作为模型底物,我们使用了喂食人乳脂肪球后获得的大鼠乳糜微粒和放射性标记脂肪酸。将放射性标记的乳糜微粒与依赖辅脂酶的胰脂肪酶、BSSL或两种酶联合孵育。两种酶对18:1的水解效率均高于22:6酯。对于依赖辅脂酶的脂肪酶,二酰甘油中大量积累22:6,而对于BSSL,它主要积累在单酰甘油中。含20:4的酯被BSSL水解的效率与18:1相同,但这种脂肪酸在依赖辅脂酶的脂肪酶作用下也以二酰甘油形式积累。在新生儿十二指肠内容物中发现的低胆汁盐浓度下,依赖辅脂酶的脂肪酶几乎无法水解20:4和22:6的酯,而BSSL能以可观的速率水解这些酯。无论胆汁盐浓度如何,两种酶联合使用对所有测试脂肪酸的水解效率最高。因此,BSSL可能在将含22:6或20:4酯的乳三酰甘油在十二指肠中完全水解为游离脂肪酸和单酰甘油方面具有生理作用。