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Aromatic residues in the C terminus of apolipoprotein C-III mediate lipid binding and LPL inhibition

机译:载脂蛋白C-III C末端的芳香残基介导脂质结合和LPL抑制

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摘要

Plasma apoC-III levels correlate with triglyceride (TG) levels and are a strong predictor of CVD outcomes. ApoC-III elevates TG in part by inhibiting LPL. ApoC-III likely inhibits LPL by competing for lipid binding. To probe this, we used oil-drop tensiometry to characterize binding of six apoC-III variants to lipid/water interfaces. This technique monitors the dependence of lipid binding on surface pressure, which increases during TG hydrolysis by LPL. ApoC-III adsorption increased surface pressure by upward of 18 mN/m at phospholipid/TG/water interfaces. ApoC-III was retained to high pressures at these interfaces, desorbing at 21–25 mN/m. Point mutants, which substituted alanine for aromatic residues, impaired the lipid binding of apoC-III. Adsorption and retention pressures decreased by 1–6 mN/m in point mutants, with the magnitude determined by the location of alanine substitutions. Trp42 was most critical to mediating lipid binding. These results strongly correlate with our previous results, linking apoC-III point mutants to increased LPL binding and activity at lipid surfaces. We propose that aromatic residues in the C-terminal half of apoC-III mediate binding to TG-rich lipoproteins. Increased apoC-III expression in the hypertriglyceridemic state allows apoC-III to accumulate on lipoproteins and inhibit LPL by preventing binding and/or access to substrate.
机译:血浆apoC-III水平与甘油三酸酯(TG)水平相关,并且是CVD结果的有力预测指标。 ApoC-III通过抑制LPL部分提高TG。 ApoC-III可能通过竞争脂质结合而抑制LPL。为了探测这一点,我们使用油滴张力测定法来表征六个apoC-III变体与脂质/水界面的结合。该技术监测脂质结合对表面压力的依赖性,该表面压力在通过LPL进行TG水解过程中增加。 ApoC-III吸附在磷脂/ TG /水界面的表面压力增加了18 mN / m。在这些界面上,ApoC-III被保留在高压下,以21–25 mN / m的速度解吸。用丙氨酸代替芳香族残基的点突变体破坏了apoC-III的脂质结合。点突变体的吸附和保留压力降低了1-6 mN / m,幅度取决于丙氨酸取代的位置。 Trp42对调解脂质结合最关键。这些结果与我们以前的结果密切相关,将apoC-III点突变体与脂蛋白表面的LPL结合和活性增加联系起来。我们提出apoC-III的C末端一半的芳香族残基介导与富含TG的脂蛋白的结合。高甘油三酸酯血症状态下增加的apoC-III表达使apoC-III可以积聚在脂蛋白上,并通过阻止结合和/或接近底物来抑制LPL。

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