首页> 美国卫生研究院文献>Biochemical Journal >Oxidation of high-density lipoprotein HDL3 leads to exposure of apo-AI and apo-AII epitopes and to formation of aldehyde protein adducts and influences binding of oxidized low-density lipoprotein to type I and type III collagen in vitro1.
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Oxidation of high-density lipoprotein HDL3 leads to exposure of apo-AI and apo-AII epitopes and to formation of aldehyde protein adducts and influences binding of oxidized low-density lipoprotein to type I and type III collagen in vitro1.

机译:高密度脂蛋白HDL3的氧化导致apo-AI和apo-AII表位暴露并形成醛蛋白加合物并影响体外氧化的低密度脂蛋白与I型和III型胶原的结合1。

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摘要

The changes in the immunological properties of apolipoprotein AI (apo-AI) and AII (apo-AII) during the oxidation of the high-density lipoprotein HDL3 and its influence on the binding of heavily oxidized low-density lipoprotein (LDL) to type I and III collagen were investigated. Oxidation of HDL3 or Eu3+-labelled HDL3 was performed with CuSO4, varying the time of oxidation. Oxidation of HDL3 resulted in an increase in lipid hydroperoxides and enhanced the negative charge of this lipoprotein. Immunological studies with a solid-phase sandwich immunoassay revealed a strong increase in binding of Eu3+-labelled HDL3 to polyclonal antibodies against apo-AI and apo-AII within the first 4 h of oxidation. Neo-epitopes were also formed by interaction of the apolipoproteins with degradation products from the lipid peroxidation of polyunsaturated fatty acids, as evidenced by an immunoreaction of oxidized Eu3+-labelled HDL3 with antibodies to 4-hydroxynonenal (4-HNE)- and malondialdehyde (MDA)-protein adducts. Western blot analysis of oxidized HDL3 samples showed, as well as apo-AI and apo-AII bands, larger aggregated apolipoproteins, occurring after 0.5-2.5 h of oxidation. These aggregates were recognized by antibodies to apo-AI and apo-AII as well as by antibodies to 4-HNE- and MDA-protein adducts. Furthermore the original apo-AI monomers and apo-AII dimers decreased during the oxidation. The ability of native and oxidized HDL3 to prevent the binding of Eu3+-labelled 24 h-oxidized LDL to collagen on microtitration plates was estimated. Interestingly, 2 h-oxidized HDL3 competed most with the binding of 24 h-oxidized LDL on collagen type I and type III, followed by native HDL3. However, 24 h-oxidized HDL3 was a weaker competitor. Thus oxidative modification of HDL3 strongly alters the immunological properties of this lipoprotein and its binding affinity for collagen.
机译:高密度脂蛋白HDL3氧化过程中载脂蛋白AI(apo-AI)和AII(apo-AII)的免疫学性质的变化及其对重度氧化的低密度脂蛋白(LDL)与I型结合的影响研究了III和III型胶原。用CuSO4氧化HDL3或Eu3 +标记的HDL3,改变氧化时间。 HDL3的氧化导致脂质过氧化氢的增加并增强了这种脂蛋白的负电​​荷。固相夹心免疫测定的免疫学研究表明,在氧化的最初4小时内,Eu3 +标记的HDL3与针对apo-AI和apo-AII的多克隆抗体的结合大大增加。载脂蛋白与多不饱和脂肪酸脂质过氧化降解产物的相互作用也形成了新表位,氧化的Eu3 +标记的HDL3与4-羟基壬烯醛(4-HNE)和丙二醛(MDA)的抗体发生了免疫反应,从而证明了新表位的形成。 )-蛋白质加合物。氧化的HDL3样品的蛋白质印迹分析显示,以及apo-AI和apo-AII条带,在0.5-2.5 h的氧化后出现了较大的聚集载脂蛋白。这些聚集体被针对apo-AI和apo-AII的抗体以及针对4-HNE-和MDA蛋白加合物的抗体所识别。此外,原始的载脂蛋白AI单体和载脂蛋白AII二聚体在氧化过程中减少。估计了天然和氧化的HDL3阻止微量滴定板上Eu3 +标记的24 h氧化的LDL与胶原结合的能力。有趣的是,2 h氧化的HDL3与24 h氧化的LDL在I型和III型胶原蛋白上的竞争最多,其次是天然HDL3。但是,24 h氧化的HDL3竞争较弱。因此,HDL3的氧化修饰强烈改变了这种脂蛋白的免疫学性质及其对胶原的结合亲和力。

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