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低密度脂蛋白(LDL)的单核细胞氧化过程并不需要脂蛋白受体相互作用。

Lipoprotein receptor interactions are not required for monocyte oxidation of LDL.

作者信息

Cathcart M K, Li Q, Chisolm G M

机构信息

Department of Cell Biology, Cleveland Clinic Foundation, OH 44195, USA.

出版信息

J Lipid Res. 1995 Sep;36(9):1857-65.

PMID:8558074
Abstract

Upon activation, human peripheral blood monocytes and U937 cells oxidized low density lipoprotein (LDL), converting it to a cytotoxin. The oxidized LDL loses its ability to interact specifically with the native LDL (apoB/E) receptor and becomes a ligand for the scavenger receptors and two other receptors, Fc gamma RII (CD32) and CD36. We performed a series of studies to evaluate the potential contribution of each of these receptors to the process of monocyte-mediated LDL oxidation. To assess the participation of the apoB/E receptor, we tested the ability of activated human monocytes to oxidize LDL after up- and down-regulation of apoB/E receptors. Neither up-regulation nor down-regulation of the apoB/E receptor significantly modified the level of LDL lipid oxidation. Acetylated LDL, a ligand for scavenger receptors, was also oxidized by the activated monocytes. Methylated LDL, a chemically modified LDL that is not recognized by the apoB/E or scavenger receptors, was oxidized as well. Thus, LDL does not need to interact with either the apoB/E receptor or scavenger receptors in order to undergo lipid oxidation. Additionally, monoclonal antibodies to CD36 and CD32 were used to block these two receptors that recognize oxidized LDL. Although both antibodies interfered with oxidized LDL binding to these receptors, neither treatment interfered with LDL lipid oxidation mediated by activated human monocytes. Our results suggest that interaction with these receptors is not a requirement for LDL lipid oxidation by activated human monocytes.

摘要

激活后,人外周血单核细胞和U937细胞会氧化低密度脂蛋白(LDL),将其转化为细胞毒素。氧化型LDL失去了与天然LDL(载脂蛋白B/ E)受体特异性相互作用的能力,并成为清道夫受体以及其他两种受体——FcγRII(CD32)和CD36的配体。我们进行了一系列研究,以评估这些受体各自对单核细胞介导的LDL氧化过程的潜在贡献。为了评估载脂蛋白B/ E受体的参与情况,我们在载脂蛋白B/ E受体上调和下调后,测试了活化的人单核细胞氧化LDL的能力。载脂蛋白B/ E受体的上调或下调均未显著改变LDL脂质氧化水平。清道夫受体的配体乙酰化LDL也被活化的单核细胞氧化。甲基化LDL是一种化学修饰的LDL,不能被载脂蛋白B/ E或清道夫受体识别,也被氧化了。因此,LDL无需与载脂蛋白B/ E受体或清道夫受体相互作用即可发生脂质氧化。此外,使用抗CD36和CD32的单克隆抗体来阻断这两种识别氧化型LDL的受体。尽管两种抗体都干扰了氧化型LDL与这些受体的结合,但两种处理均未干扰活化的人单核细胞介导的LDL脂质氧化。我们的结果表明,与这些受体相互作用不是活化的人单核细胞氧化LDL脂质的必要条件。

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