Shand J H, West D W
Hannah Research Institute, Scotland, United Kingdom.
Lipids. 1995 Aug;30(8):763-70. doi: 10.1007/BF02537804.
There is an accumulation of the glycolytic enzyme enolase and of cholesteryl esters in macrophages that have been converted into "foam" cells. In this study, we questioned whether enolase could be involved in this accumulation of cholesteryl esters by inhibiting the activity of neutral cholesteryl ester hydrolases. Enolase from both yeast and rabbit muscle were incubated with three different cholesteryl ester hydrolases and were shown to inhibit the hydrolysis of cholesteryl esters. Inhibition was dependent on the concentration of enolase and appeared to occur through binding of the enolase to the cholesteryl ester. Nevertheless, the yeast and rabbit muscle enolases differed in their efficiency of inhibition and in their mechanism of action. Purification of commercial enolase preparations by gel-filtration yielded single proteins with the same inhibitory activities as the originals, indicating that the inhibition was not due to the presence of an impurity. Partially purified alpha alpha- and gamma gamma-isoforms of the enzyme from rat brain also appear to have inhibitory effects on cholesteryl ester hydrolysis. Negative control of the hydrolytic phase of the cholesterol/cholesteryl ester cycle may be a secondary function of enolases which correlates with the accumulation of cholesteryl esters in a number of neuro-degenerative and demyelinating diseases.
在已转变为“泡沫”细胞的巨噬细胞中,存在糖酵解酶烯醇化酶和胆固醇酯的积累。在本研究中,我们质疑烯醇化酶是否可能通过抑制中性胆固醇酯水解酶的活性而参与胆固醇酯的这种积累。将来自酵母和兔肌肉的烯醇化酶与三种不同的胆固醇酯水解酶一起孵育,结果显示其可抑制胆固醇酯的水解。抑制作用取决于烯醇化酶的浓度,并且似乎是通过烯醇化酶与胆固醇酯的结合而发生的。然而,酵母和兔肌肉烯醇化酶在抑制效率和作用机制上有所不同。通过凝胶过滤纯化市售烯醇化酶制剂,得到的单一蛋白质具有与原始制剂相同的抑制活性,这表明抑制作用并非由于杂质的存在。从大鼠脑中部分纯化的该酶的αα-和γγ-同工型似乎也对胆固醇酯水解具有抑制作用。对胆固醇/胆固醇酯循环水解阶段的负调控可能是烯醇化酶的次要功能,这与多种神经退行性疾病和脱髓鞘疾病中胆固醇酯的积累相关。