Yen F T, Deckelbaum R J, Mann C J, Marcel Y L, Milne R W, Tall A R
Department of Pediatrics, Columbia University College of Physicians and Surgeons, New York 10032.
J Clin Invest. 1989 Jun;83(6):2018-24. doi: 10.1172/JCI114112.
We have employed a neutralizing monoclonal antibody, prepared against the Mr 74,000 cholesteryl ester transfer protein (CETP), to investigate the regulation of lecithin:cholesterol acyltransferase (LCAT) activity by cholesteryl ester (CE) transfer, and also to determine which lipoproteins are substrates for LCAT in human plasma. The incubation of normolipidemic plasma led to transfer of CE from HDL to VLDL, and of triglycerides from VLDL to LDL and HDL. This net mass transfer of neutral lipids between the lipoproteins was eliminated by the monoclonal antibody. However, CE transfer inhibition had no effect on the rate of plasma cholesterol esterification in plasma incubated from 10 min to 24 h at 37 degrees C. In the absence of CE transfer, HDL and LDL exhibited cholesterol esterification activity, whereas VLDL did not. The rate of CE formation in HDL was three to four times greater than in LDL during the first hour of incubation, but CE formation in HDL decreased after 6-8 h, while that in LDL continued. Thus, (a) the Mr 74,000 CETP is responsible for all neutral lipid mass transfer in incubated human plasma, (b) the rate of CE formation in plasma is not regulated by CE transfer from HDL to other lipoproteins, and (c) HDL is the major initial substrate for LCAT; LDL assumes a more significant role only after prolonged incubation of plasma.
我们使用了一种针对分子量为74,000的胆固醇酯转运蛋白(CETP)制备的中和性单克隆抗体,来研究胆固醇酯(CE)转运对卵磷脂胆固醇酰基转移酶(LCAT)活性的调节作用,并确定人血浆中哪些脂蛋白是LCAT的底物。正常血脂血浆的孵育导致CE从高密度脂蛋白(HDL)转移至极低密度脂蛋白(VLDL),以及甘油三酯从VLDL转移至低密度脂蛋白(LDL)和HDL。单克隆抗体消除了脂蛋白之间中性脂质的这种净质量转移。然而,CE转运抑制对在37℃孵育10分钟至24小时的血浆中胆固醇酯化速率没有影响。在没有CE转运的情况下,HDL和LDL表现出胆固醇酯化活性,而VLDL则没有。在孵育的第一个小时内,HDL中CE形成的速率比LDL中高3至4倍,但孵育6至8小时后,HDL中CE的形成减少,而LDL中的CE形成仍在继续。因此,(a)分子量为74,000的CETP负责孵育人血浆中的所有中性脂质质量转移,(b)血浆中CE形成的速率不受CE从HDL转移至其他脂蛋白的调节,并且(c)HDL是LCAT的主要初始底物;只有在血浆长时间孵育后,LDL才发挥更重要的作用。