Aviram M, Keidar S, Rosenblat M, Brook G J
Lipid Research Unit, Rambam Medical Center, Rappaport Family Institute for Research in Medical Sciences and Technion Faculty of Medicine, Haifa, Israel.
J Biol Chem. 1991 Jun 25;266(18):11567-74.
Changes in low density lipoprotein (LDL) lipid composition were shown to alter its interaction with the LDL receptor, thus affecting its cellular uptake. Upon incubation of LDL with 5 units/ml cholesterol esterase (CEase) for 1 h at 37 degrees C, there was a 33% reduction in lipoprotein cholesteryl ester content, paralleled by an increment in its unesterified cholesterol. CEase-LDL, in comparison to native LDL, was smaller in size, possessed fewer free lysine amino groups (by 14%), and demonstrated reduced binding to heparin (by 83%) and reduced immunoreactivity against monoclonal antibodies directed toward epitopes along the LDL apoB-100. Incubation of CEase-LDL with the J-774 macrophage-like cell line resulted in about a 30% reduction in lipoprotein binding and degradation in comparison to native LDL, and this was associated with a 20% reduction in macrophage cholesterol mass. Similarly, CEase-LDL degradation by mouse peritoneal macrophages, human monocyte-derived macrophages, and human skin fibroblasts was reduced by 20-44% in comparison to native LDL. CEase-LDL uptake by macrophages was mediated via the LDL receptor and not the scavenger receptor. CEase activity toward LDL was demonstrated in plasma and in cells of the arterial wall such as macrophages and endothelial cells. Thus, CEase modification of LDL may take place in vivo, and this phenomenon may have a role in atherosclerosis.
低密度脂蛋白(LDL)脂质组成的变化显示会改变其与LDL受体的相互作用,从而影响其细胞摄取。将LDL与5单位/毫升胆固醇酯酶(CEase)在37℃孵育1小时后,脂蛋白胆固醇酯含量降低了33%,同时其未酯化胆固醇增加。与天然LDL相比,CEase-LDL尺寸更小,游离赖氨酸氨基更少(减少14%),与肝素的结合减少(减少83%),针对LDL载脂蛋白B-100上抗原表位的单克隆抗体的免疫反应性降低。与天然LDL相比,将CEase-LDL与J-774巨噬细胞样细胞系孵育导致脂蛋白结合和降解减少约30%,这与巨噬细胞胆固醇含量减少20%有关。同样,与天然LDL相比,小鼠腹腔巨噬细胞、人单核细胞衍生的巨噬细胞和人皮肤成纤维细胞对CEase-LDL的降解减少了20%-44%。巨噬细胞对CEase-LDL的摄取是通过LDL受体而非清道夫受体介导的。在血浆以及动脉壁细胞如巨噬细胞和内皮细胞中均证实了CEase对LDL的活性。因此,LDL的CEase修饰可能在体内发生,且这种现象可能在动脉粥样硬化中起作用。