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Disruption of the C-terminal helix by single amino acid deletion is directly responsible for impaired cholesterol efflux ability of apolipoprotein A-I Nichinan

机译:通过单个氨基酸缺失破坏C末端螺旋直接​​导致载脂蛋白A-1 Nichinan的胆固醇外排能力受损

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摘要

Apolipoprotein A-I (apoA-I) Nichinan, a naturally occurring variant with ΔE235 in the C terminus, is associated with low plasma HDL levels. Here, we investigated the tertiary structure, lipid-binding properties, and ability to induce cellular cholesterol efflux of apoA-I Nichinan and its C-terminal peptide. Thermal and chemical denaturation experiments demonstrated that the ΔE235 mutation decreased the protein stability compared with wild type (WT). ApoA-I Nichinan exhibited capabilities to bind to or solubilize lipid vesicles that are intermediate to that of WT and a L230P/L233P/Y236P variant in which the C-terminal α-helix folding is completely disrupted and forms relatively larger and unstable discoidal complexes, indicating that perturbation of the C-terminal α-helical structure by the ΔE235 mutation leads to reduced lipid binding. Supporting this, apoA-I 209-241/ΔE235 peptide showed significantly decreased ability to form α-helix both in the lipid-free and lipid-bound states, and reduced efficiency to solubilize vesicles. In addition, both apoA-I Nichinan and its C-terminal peptide exhibited reduced activity in ABCA1-mediated cellular cholesterol efflux. Thus, the disruption of the ability of the C-terminal region to form α-helix caused by the E235 deletion appears to be the important determinant of impaired lipid binding and cholesterol efflux ability and, consequently, the low plasma HDL levels of apoA-I Nichinan probands.
机译:载脂蛋白A-I(apoA-I)Nichinan是C末端带有ΔE235的天然变异体,与血浆HDL水平低有关。在这里,我们调查的三级结构,脂质结合特性和诱导apoA-I日南和其C端肽的细胞胆固醇外排的能力。热和化学变性实验表明,与野生型(WT)相比,ΔE235突变降低了蛋白质的稳定性。 ApoA-I Nichinan表现出与WT和L230P / L233P / Y236P变体中间的脂质囊泡结合或增溶的能力,其中C端α-螺旋折叠被完全破坏并形成相对较大且不稳定的盘状复合物,提示ΔE235突变对C末端α螺旋结构的干扰导致脂质结合减少。支持这一点的是,apoA-I 209-241 /ΔE235肽在无脂质和脂质结合状态下均显着降低形成α-螺旋的能力,并降低了溶解小泡的效率。另外,apoA-I Nichinan及其C端肽在ABCA1介导的细胞胆固醇外流中均表现出降低的活性。因此,由E235缺失引起的C端区形成α-螺旋能力的破坏似乎是脂类结合力和胆固醇外排能力受损的重要决定因素,因此,apoA-I的血浆HDL水平低日南先证者。

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