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首页> 外文期刊>The Journal of biological chemistry >Mechanisms of inhibition by apolipoprotein C of apolipoprotein E-dependent cellular metabolism of human triglyceride-rich lipoproteins through the low density lipoprotein receptor pathway.
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Mechanisms of inhibition by apolipoprotein C of apolipoprotein E-dependent cellular metabolism of human triglyceride-rich lipoproteins through the low density lipoprotein receptor pathway.

机译:载脂蛋白C通过低密度脂蛋白受体途径抑制人富含甘油三酸酯的脂蛋白的载脂蛋白E依赖性细胞代谢的机制。

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摘要

The mechanism of inhibition by apolipoprotein C of the uptake and degradation of triglyceride-rich lipoproteins from human plasma via the low density lipoprotein (LDL) receptor pathway was investigated in cultured human skin fibroblasts. Very low density lipoprotein (VLDL) density subfractions and intermediate density lipoprotein (IDL) with or without added exogenous recombinant apolipoprotein E-3 were used. Total and individual (C-I, C-II, C-III-1, and C-III-2) apoC molecules effectively inhibited apoE-3-mediated cell metabolism of the lipoproteins through the LDL receptor, with apoC-I being most effective. When the incubation was carried out with different amounts of exogenous apoE-3 and exogenous apoC, it was shown that the ratio of apoE-3 to apoC determined the uptake and degradation of VLDL. Excess apoE-3 overcame, at least in part, the inhibition by apoC. ApoC, in contrast, did not affect LDL metabolism. Neither apoA-I nor apoA-II, two apoproteins that do not readily associate with VLDL, had any effect on VLDL cell metabolism. The inhibition of VLDL and IDL metabolism cannot be fully explained by interference of association of exogenous apoE-3 with or displacement of endogenous apoE from the lipoproteins. IDL is a lipoprotein that contains both apoB-100 and apoE. By using monoclonal antibodies 4G3 and 1D7, which specifically block cell interaction by apoB-100 and apoE, respectively, it was possible to assess the effects of apoC on either apoprotein. ApoC dramatically depressed the interaction of IDL with the fibroblast receptor through apoE, but had only a moderate effect on apoB-100. The study thus demonstrates that apoC inhibits predominantly the apoE-3-dependent interaction of triglyceride-rich lipoproteins with the LDL receptor in cultured fibroblasts and that the mechanism of inhibition reflects association of apoC with the lipoproteins and specific concentration-dependent effects on apoE-3 at the lipoprotein surface.
机译:在培养的人皮肤成纤维细胞中,研究了载脂蛋白C通过低密度脂蛋白(LDL)受体途径抑制人血浆中富含甘油三酸酯的脂蛋白的摄取和降解的机制。使用极低密度脂蛋白(VLDL)密度亚组分和中等密度脂蛋白(IDL),添加或不添加外源重组载脂蛋白E-3。全部和单个(C-1,C-II,C-III-1和C-III-2)分子均通过LDL受体有效抑制脂蛋白的apoE-3介导的脂蛋白细胞代谢,而apoC-1最有效。当用不同量的外源apoE-3和外源apoC进行孵育时,显示apoE-3与apoC的比例决定了VLDL的吸收和降解。过量的apoE-3至少部分克服了apoC的抑制作用。相反,ApoC不会影响LDL代谢。不容易与VLDL结合的两种载脂蛋白apoA-I和apoA-II都不会对VLDL细胞代谢产生任何影响。 VLDL和IDL代谢的抑制不能通过外源apoE-3与脂蛋白的内源性apoE的结合干扰或内源性apoE的置换来完全解释。 IDL是一种脂蛋白,同时含有apoB-100和apoE。通过使用单克隆抗体4G3和1D7(分别特异性阻断apoB-100和apoE的细胞相互作用),可以评估apoC对任一载脂蛋白的影响。 ApoC通过apoE显着抑制了IDL与成纤维细胞受体的相互作用,但对apoB-100的作用中等。因此,研究表明,apoC主要抑制培养的成纤维细胞中富含甘油三酸酯的脂蛋白与LDL受体的apoE-3依赖性相互作用,并且抑制机制反映apoC与脂蛋白的结合以及对apoE-3的特定浓度依赖性作用在脂蛋白表面。

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