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首页> 外文期刊>Journal of Lipid Research >Relative importance of the LDL receptor and scavenger receptor class B in the beta-VLDL-induced uptake and accumulation of cholesteryl esters by peritoneal macrophages.
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Relative importance of the LDL receptor and scavenger receptor class B in the beta-VLDL-induced uptake and accumulation of cholesteryl esters by peritoneal macrophages.

机译:LDL受体和B类清除剂受体在β-VLDL诱导的腹膜巨噬细胞摄取和积累胆固醇酯方面的相对重要性。

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We investigated the mechanism of beta-very low density lipoprotein (beta-VLDL)-induced foam cell formation derived from peritoneal macrophages from control mice and low density lipoprotein (LDL) receptor-deficient mice to elucidate the role of the LDL receptor in this process. The LDL receptor appeared to be of major importance for beta-VLDL metabolism. Consequently, the accumulation of cholesteryl esters in LDL receptor(-)(/)- macrophages is 2.5-fold lower than in LDL receptor(+)(/)(+) macrophages. In the absence of the LDL receptor, however, beta-VLDL was still able to induce cholesteryl ester accumulation and subsequently we characterized the properties of this residual beta-VLDL recognition site(s) of LDL receptor(-)(/)- macrophages. Although the LDL receptor-related protein is expressed on LDL receptor(-)(/)- macrophages, the cell association of beta-VLDL is not influenced by the receptor-associated protein, and treatment of the macrophages with heparinase and chondroitinase was also ineffective. In contrast, both oxidized LDL (OxLDL) and anionic liposomes were able to inhibit the cell association of (125)I-labeled beta-VLDL in LDL receptor(-)(/)- macrophages by 65%. These properties suggest a role for scavenger receptor class B (SR-B), and indeed, in the LDL receptor(-)(/)- macrophages the selective uptake of cholesteryl esters from beta-VLDL was 2.2-fold higher than that of apolipoproteins, a process that could be inhibited by OxLDL, high density lipoprotein (HDL), and beta-VLDL.In conclusion, the LDL receptor on peritoneal macrophages is directly involved in the metabolism of beta-VLDL and the subsequent foam cell formation. When the LDL receptor is absent, SR-B appears to mediate the remaining metabolism of cholesteryl esters from beta-VLDL.
机译:我们调查了由控制小鼠和低密度脂蛋白(LDL)受体缺陷型小鼠腹膜巨噬细胞衍生的β-非常低密度脂蛋白(β-VLDL)诱导的泡沫细胞形成的机制,以阐明LDL受体在此过程中的作用。 LDL受体似乎对β-VLDL代谢至关重要。因此,胆固醇酯在LDL受体(-)(/)-巨噬细胞中的积累比LDL受体(+)(/)(+)巨噬细胞中的胆固醇低2.5倍。然而,在缺少LDL受体的情况下,β-VLDL仍然能够诱导胆固醇酯的积累,随后我们表征了LDL受体(-)(/)-巨噬细胞的这个残留β-VLDL识别位点的特性。尽管LDL受体相关蛋白在LDL受体(-)(/)-巨噬细胞上表达,但β-VLDL的细胞缔合不受受体相关蛋白的影响,用肝素酶和软骨素酶处理巨噬细胞也无效。相反,氧化的LDL(OxLDL)和阴离子脂质体都能够抑制LDL受体(-)(/)-巨噬细胞中(125)I标记的β-VLDL的细胞缔合。这些特性表明清除剂受体B类(SR-B)的作用,并且的确,在LDL受体(-)(/)-巨噬细胞中,从β-VLDL选择性吸收胆固醇酯比载脂蛋白高2.2倍可以被OxLDL,高密度脂蛋白(HDL)和β-VLDL抑制的过程。总之,腹膜巨噬细胞上的LDL受体直接参与β-VLDL的代谢和随后的泡沫细胞形成。当缺少LDL受体时,SR-B似乎介导了来自β-VLDL的胆固醇酯的剩余代谢。

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