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首页> 外文期刊>Journal of Lipid Research >Conformational changes of apoB-100 in SMase-modified LDL mediate formation of large aggregates at acidic pH
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Conformational changes of apoB-100 in SMase-modified LDL mediate formation of large aggregates at acidic pH

机译:SMase修饰的LDL中apoB-100的构象变化介导了酸性pH下大聚集体的形成

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During atherogenesis, the extracellular pH of atherosclerotic lesions decreases. Here, we examined the effect of low, but physiologically plausible pH on aggregation of modified LDL, one of the key processes in atherogenesis. LDL was treated with SMase, and aggregation of the SMase-treated LDL was followed at pH 5.5-7.5. The lower the pH, the more extensive was the aggregation of identically prelipolyzed LDL particles. At pH 5.5-6.0, the aggregates were much larger (size >1 μm) than those formed at neutral pH (100-200 nm). SMase treatment was found to lead to a dramatic decrease in α-helix and concomitant increase in β-sheet structures of apoB-100. Particle aggregation was caused by interactions between newly exposed segments of apoB-100. LDL-derived lipid microemulsions lacking apoB-100 failed to form large aggregates. SMase-induced LDL aggregation could be blocked by lowering the incubation temperature to 15°C, which also inhibited the changes in the conformation of apoB-100, by proteolytic degradation of apoB-100 after SMase-treatment, and by HDL particles. Taken together, sphingomyelin hydrolysis induces exposure of protease-sensitive sites of apoB-100, whose interactions govern subsequent particle aggregation. The supersized LDL aggregates may contribute to the retention of LDL lipids in acidic areas of atherosclerosis-susceptible sites in the arterial intima.
机译:在动脉粥样硬化过程中,动脉粥样硬化病变的细胞外pH降低。在这里,我们检查了低但生理上合理的pH值对修饰的LDL(动脉粥样硬化的关键过程之一)聚集的影响。用SMase处理LDL,并在pH 5.5-7.5下跟踪经SMase处理的LDL的聚集。 pH值越低,预脂化程度相同的LDL颗粒的聚集越广泛。在pH 5.5-6.0时,聚集体比中性pH(100-200 nm)形成的聚集体大得多(尺寸> 1μm)。发现SMase处理可导致apoB-100的α-螺旋显着减少,并随之增加β-折叠结构。颗粒聚集是由apoB-100新暴露的片段之间的相互作用引起的。缺乏apoB-100的LDL衍生脂质微乳无法形成大的聚集体。可以通过将孵育温度降低至15°C来阻止SMase诱导的LDL聚集,这也可以抑制apoB-100构象的变化,通过SMase处理后apoB-100的蛋白水解降解以及HDL颗粒。结合在一起,鞘磷脂水解诱导apoB-100的蛋白酶敏感位点暴露,其相互作用决定了随后的颗粒聚集。超大型LDL聚集体可能有助于将LDL脂质保留在动脉内膜的动脉粥样硬化易感部位的酸性区域。

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