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首页> 外文期刊>Journal of Lipid Research >Anti-inflammatory apoA-I-mimetic peptides bind oxidized lipids with much higher affinity than human apoA-I.
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Anti-inflammatory apoA-I-mimetic peptides bind oxidized lipids with much higher affinity than human apoA-I.

机译:抗炎apoA-I模拟肽以比人类apoA-I高得多的亲和力结合氧化脂质。

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4F is an anti-inflammatory, apolipoprotein A-I (apoA-I)-mimetic peptide that is active in vivo at nanomolar concentrations in the presence of a large molar excess of apoA-I. Physiologic concentrations ( approximately 35 muM) of human apoA-I did not inhibit the production of LDL-induced monocyte chemotactic activity by human aortic endothelial cell cultures, but adding nanomolar concentrations of 4F in the presence of approximately 35 muM apoA-I significantly reduced this inflammatory response. We analyzed lipid binding by surface plasmon resonance. The anti-inflammatory 4F peptide bound oxidized lipids with much higher affinity than did apoA-I. Initially, we examined the binding of PAPC (1-palmitoyl-2-arachidonoyl-sn-glycero-3-phosphatidylcholine) and observed that its oxidized products bound 4F with an affinity that was approximately 4-6 orders of magnitude higher than that of apoA-I. This high binding affinity was confirmed in studies with defined lipids and phospholipids. 3F-2 and 3F(14) are also amphipathic alpha-helical octadecapeptides, but 3F-2 inhibits atherosclerosis in mice and 3F(14) does not. Like 4F, 3F-2 also bound oxidized phospholipids with very high affinity, whereas 3F(14) resembled apoA-I. The extraordinary ability of 4F to bind pro-inflammatory oxidized lipids probably accounts for its remarkable anti-inflammatory properties.
机译:4F是抗炎的载脂蛋白A-1(apoA-I)模拟肽,在大摩尔过量的apoA-1存在下,其在纳摩尔浓度下在体内具有活性。生理浓度(约35μM)的人apoA-I不会抑制人主动脉内皮细胞培养物产生LDL诱导的单核细胞趋化活性,但在约35μMapoA-I存在的情况下添加纳摩尔浓度的4F会明显降低炎症反应。我们通过表面等离振子共振分析了脂质结合。抗炎4F肽以比apoA-I高得多的亲和力结合氧化脂质。最初,我们检查了PAPC(1-棕榈酰-2-花生四烯酰基-sn-甘油-3-磷脂酰胆碱)的结合,并观察到其氧化产物结合4F的亲和力比apoA高约4-6个数量级。 -一世。在确定的脂质和磷脂的研究中证实了这种高结合亲和力。 3F-2和3F(14)也是两亲性α-螺旋八肽,但3F-2抑制小鼠的动脉粥样硬化,而3F(14)则不。像4F一样,3F-2也以很高的亲和力结合氧化的磷脂,而3F(14)类似于apoA-I。 4F结合促炎氧化脂质的非凡能力可能是其显着的抗炎特性。

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