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Generation in human plasma of misfolded, aggregation-prone electronegative low density lipoprotein

机译:在人血浆中生成易折叠,易聚集的负电性低密度脂蛋白

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摘要

Human plasma contains small amounts of a low density lipoprotein in which apoprotein is misfolded. Originally identified and isolated by means of anion-exchange chromatography, this component was subsequently described as electronegative low density lipoprotein (LDL)(-), with increased concentrations associated with elevated cardiovascular disease risk. It has been recognized recently as the trigger of LDL amyloidogenesis, which produces aggregates similar to subendothelial droplets observed in vivo in early atherogenesis. Although LDL(-) has been produced in vitro through various manipulations, the mechanisms involved in its generation in vivo remain obscure. By using a more physiological model, we demonstrate spontaneous, sustained and noticeable production of LDL(-) during incubation of unprocessed human plasma at 37 degrees C. In addition to a higher fraction of amyloidogenic LDL(-), LDL purified from incubated plasma contains an increased level of lysophospholipids and free fatty acids; analysis of LDL lipids packing shows their loosening. As a result, during plasma incubation, lipid destabilization and protein misfolding take place, and aggregation-prone particles are generated. All these phenomena can be prevented by inhibiting calcium-dependent secretory phospholipases A2. Our plasma incubation model, without removal of reaction products, effectively shows a lipid-protein interplay in LDL, where lipid destabilization after lipolysis threatens the apoprotein's structure, which misfolds and becomes aggregation-prone.
机译:人血浆中含有少量的载脂蛋白错误折叠的低密度脂蛋白。该成分最初是通过阴离子交换色谱法鉴定和分离的,随后被描述为负电性低密度脂蛋白(LDL)(-),其浓度升高与心血管疾病的风险升高相关。最近,它被认为是LDL淀粉样蛋白生成的触发因子,它产生类似于在早期动脉粥样硬化体内观察到的内皮下小液滴的聚集体。尽管LDL(-)已通过各种操作在体外产生,但其在体内产生的机制仍不清楚。通过使用更生理的模型,我们证明了未经处理的人血浆在37摄氏度下孵育过程中LDL(-)的自发,持续和显着产生。除了更高比例的淀粉样蛋白LDL(-)之外,从孵育血浆中纯化的LDL还包含溶血磷脂和游离脂肪酸水平升高; LDL脂质堆积的分析表明它们松动。结果,在血浆温育期间,发生脂质不稳定和蛋白质错误折叠,并产生易于聚集的颗粒。所有这些现象都可以通过抑制钙依赖性分泌型磷脂酶A2来预防。我们的血浆培养模型没有去除反应产物,有效地显示了LDL中的脂蛋白相互作用,脂解后脂不稳定会威胁载脂蛋白的结构,后者折叠错误并易于聚集。

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