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Paradoxical effects of SAA on lipoprotein oxidation suggest a new antioxidant function for SAA

机译:SAA对脂蛋白氧化的矛盾效应表明SAA具有新的抗氧化功能

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摘要

Oxidative stress and inflammation, which involve a dramatic increase in serum amyloid A (SAA) levels, are critical in the development of atherosclerosis. Most SAA circulates on plasma HDL particles, altering their cardioprotective properties. SAA-enriched HDL has diminished anti-oxidant effects on LDL, which may contribute to atherogenesis. We determined combined effects of SAA enrichment and oxidation on biochemical changes in HDL. Normal human HDLs were incubated with SAA, oxidized by various factors (Cu2+, myeloperoxidase, H2O2, OCl), and analyzed for lipid and protein modifications and biophysical remodeling. Three novel findings are reported: addition of SAA reduces oxidation of HDL and LDL lipids; oxidation of SAA-containing HDL in the presence of OCl generates a covalent heterodimer of SAA and apoA-I that resists the release from HDL; and mild oxidation promotes spontaneous release of proteins (SAA and apoA-I) from SAA-enriched HDL. We show that the anti-oxidant effects of SAA extend to various oxidants and are mediated mainly by the unbound protein. We propose that free SAA sequesters lipid hydroperoxides and delays lipoprotein oxidation, though much less efficiently than other anti-oxidant proteins, such as apoA-I, that SAA displaces from HDL. These findings prompt us to reconsider the role of SAA in lipid oxidation in vivo.
机译:涉及血清淀粉样蛋白A(SAA)水平急剧增加的氧化应激和炎症对于动脉粥样硬化的发展至关重要。大多数SAA在血浆HDL颗粒上循环,从而改变其心脏保护特性。富含SAA的HDL对LDL的抗氧化作用减弱,这可能有助于动脉粥样硬化的形成。我们确定了SAA富集和氧化对HDL生化变化的综合影响。正常人HDL与SAA一起孵育,并被各种因素(Cu 2 + ,髓过氧化物酶,H2O2,OCl -)氧化,并进行脂质和蛋白质修饰以及生物物理重塑。报道了三个新发现:添加SAA可以减少HDL和LDL脂质的氧化;在OCl -存在下,含SAA的HDL氧化产生SAA和apoA-I的共价异二聚体,从而阻止HDL的释放;轻度的氧化促进从富含SAA的HDL中自发释放蛋白质(SAA和apoA-I)。我们表明,SAA的抗氧化作用扩展到各种氧化剂,并主要由未结合的蛋白质介导。我们提出,游离的SAA螯合脂质氢过氧化物并延迟脂蛋白的氧化,尽管其效率比SAA从HDL取代的其他抗氧化剂蛋白(例如apoA-I)要低得多。这些发现促使我们重新考虑SAA在体内脂质氧化中的作用。

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