Scow R O, Desnuelle P, Verger R
J Biol Chem. 1979 Jul 25;254(14):6456-63.
The action of purified bovine milk lipoprotein lipase on tri[3H]oleoylglycerol and the effect of albumin on movement of lipolytic products at an argon-water interface were studied in a specially designed tricomparted trough. The amount of trioleoylglycerol applied was 14 times that needed to cover the surface of the aqueous subphase (0.1 M Tris . HCl, pH 7.4) with a monolayer. It is concluded that trioleoylglycerol was present in lenses on the surface of the aqueous subphase, that hydrolysis by lipoprotein lipase occurred in or near the lipid/argon-water interface, and that lipolytic products immediately located and spread throughout the interface, displacing substances with lower spreading pressures from the interface. Addition of albumin to the aqueous subphase accelerated markedly the desorption of oleic acid and monooleoylglycerol from the interface and thereby enhanced lipolysis. When albumin was not contiguous with the site of hydrolysis, oleic acid and monooleoylglycerol readily moved in the interface to the area of contact with albumin where they were desorbed from the interface. These findings support the hypothesis of transport of lipolytic products by lateral movement in cell membranes.
在一个特别设计的三室槽中,研究了纯化的牛乳脂蛋白脂肪酶对三[³H]油酰甘油的作用以及白蛋白对脂解产物在氩 - 水界面移动的影响。所施加的三油酰甘油的量是用单分子层覆盖水相下层(0.1M Tris·HCl,pH 7.4)表面所需量的14倍。得出的结论是,三油酰甘油以透镜状存在于水相下层的表面,脂蛋白脂肪酶的水解发生在脂质/氩 - 水界面处或其附近,并且脂解产物立即定位并扩散到整个界面,将具有较低铺展压力的物质从界面上置换出来。向水相下层中添加白蛋白显著加速了油酸和单油酰甘油从界面的解吸,从而增强了脂解作用。当白蛋白不与水解部位相邻时,油酸和单油酰甘油很容易在界面中移动到与白蛋白接触的区域,在那里它们从界面解吸。这些发现支持了脂解产物通过细胞膜中的侧向移动进行转运的假说。