Mookerjea S, Francis J, Hunt D, Yang C Y, Nagpurkar A
Department of Biochemistry, Memorial University, St John's, Newfoundland, Canada.
Arterioscler Thromb. 1994 Feb;14(2):282-7. doi: 10.1161/01.atv.14.2.282.
We have previously shown the binding of low-density lipoprotein (LDL) to immobilized rat C-reactive protein (CRP) and the formation of a fluid-phase complex between these two proteins. In this report we used immunoelectrophoresis and agarose gel electrophoresis to show increased anodic migration of the LDL particle as a result of the modification of LDL by rat CRP. The degradation of the modified 125I-LDL by rat peritoneal macrophages was increased more than twofold in the presence of rat CRP. The increase in rat CRP-mediated 125I-LDL degradation by macrophages was dependent on the concentrations of 125I-LDL and rat CRP. This increased 125I-LDL degradation was inhibited by phosphorylcholine. In contrast, the degradation of 125I-acetyl-LDL by macrophages was not affected by rat CRP, although acetylated LDL inhibited the rat CRP-stimulated degradation of 125I-LDL. Increasing concentrations of LDL did not affect the degradation of rat 125I-CRP by the macrophages, which suggested that the rat CRP and the modified LDL did not enter the cell as a complex. Our results suggested that the increased degradation of 125I-LDL was caused by the charge modification of 125I-LDL by rat CRP, due to a fluid-phase complex formation between 125I-LDL and rat CRP, and that the degradation involved the scavenger receptor present on the macrophages.
我们之前已证明低密度脂蛋白(LDL)与固定化大鼠C反应蛋白(CRP)的结合以及这两种蛋白之间液相复合物的形成。在本报告中,我们使用免疫电泳和琼脂糖凝胶电泳来显示由于大鼠CRP对LDL的修饰,LDL颗粒的阳极迁移增加。在大鼠CRP存在的情况下,大鼠腹膜巨噬细胞对修饰的125I-LDL的降解增加了两倍多。大鼠CRP介导的巨噬细胞对125I-LDL降解的增加取决于125I-LDL和大鼠CRP的浓度。这种125I-LDL降解的增加受到磷酸胆碱的抑制。相反,巨噬细胞对125I-乙酰化LDL的降解不受大鼠CRP的影响,尽管乙酰化LDL抑制了大鼠CRP刺激的125I-LDL降解。LDL浓度的增加并不影响巨噬细胞对大鼠125I-CRP的降解,这表明大鼠CRP和修饰的LDL不是以复合物形式进入细胞。我们的结果表明,125I-LDL降解的增加是由于大鼠CRP对125I-LDL的电荷修饰,这是由于125I-LDL与大鼠CRP之间形成了液相复合物,并且这种降解涉及巨噬细胞上存在的清道夫受体。