LipoLab, Yeungnam University, Gyeongsan 38541, Korea.
Raydel Research Institute, Medical Innovation Complex, Daegu 41061, Korea.
Molecules. 2022 Jul 1;27(13):4255. doi: 10.3390/molecules27134255.
Human serum amyloid A (SAA) is an exchangeable apolipoprotein (apo) in high-density lipoprotein (HDL) that influences HDL quality and functionality, particularly in the acute phase of inflammation. On the other hand, the structural and functional correlations of HDL containing SAA and apoA-I have not been reported. The current study was designed to compare the change in HDL quality with increasing SAA content in the lipid-free and lipid-bound states in reconstituted HDL (rHDL). The expressed recombinant human SAA1 (13 kDa) was purified to at least 98% and characterized in the lipid-free and lipid-bound states with apoA-I. The dimyristoyl phosphatidylcholine (DMPC) binding ability of apoA-I was impaired severely by the addition of SAA, while SAA alone could not bind with DMPC. The recombinant human SAA1 was incorporated into the rHDL (molar ratio 95:5:1, 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC): cholesterol: apoA-I) with various apoA-I:SAA molar ratios from 1:0 to 1:0.5, 1:1 and 1:2. With increasing SAA1 content, the rHDL particle size was reduced from 98 Å to 93 Å, and the α-helicity of apoA-I:SAA was decreased from 73% to 40% for (1:0) and (1:2), respectively. The wavelength maximum fluorescence (WMF) of tryptophan in rHDL was red-shifted from 339 nm to 345 nm for (1:0) and (1:2) of apoA-I:SAA, respectively, indicating that the addition of SAA to rHDL destabilized the secondary structure of apoA-I. Upon denaturation by urea treatment from 0 M to 8 M, SAA showed only a 3 nm red-shift in WMF, while apoA-I showed a 16 nm red-shift in WMF, indicating that SAA is resistant to denaturation and apoA-I had higher conformational flexibility than SAA. The glycation reaction of apoA-I in the presence of fructose was accelerated up to 1.8-fold by adding SAA in a dose-dependent manner than that of apoA-I alone. In conclusion, the incorporation of SAA in rHDL impaired the structural stability of apoA-I and exacerbated glycation of HDL and apoA-I.
人血清淀粉样蛋白 A(SAA)是高密度脂蛋白(HDL)中可交换的载脂蛋白(apo),它影响 HDL 的质量和功能,尤其是在炎症的急性期。另一方面,含有 SAA 和 apoA-I 的 HDL 的结构和功能相关性尚未报道。本研究旨在比较脂质游离状态和脂质结合状态下 SAA 含量增加时,再结合 HDL(rHDL)中 HDL 质量的变化。表达的重组人 SAA1(13 kDa)被纯化至至少 98%,并与 apoA-I 在脂质游离状态和脂质结合状态下进行了表征。apoA-I 的二肉豆蔻酰基磷脂酰胆碱(DMPC)结合能力因添加 SAA 而严重受损,而单独的 SAA 不能与 DMPC 结合。重组人 SAA1 以各种 apoA-I:SAA 摩尔比 95:5:1(1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸胆碱(POPC):胆固醇:apoA-I)掺入 rHDL 中,摩尔比从 1:0 到 1:0.5、1:1 和 1:2。随着 SAA1 含量的增加,rHDL 粒径从 98 Å 减小至 93 Å,apoA-I:SAA 的 α-螺旋度分别从 73%降至 40%(1:0)和 1:2)。rHDL 中色氨酸的最大荧光波长(WMF)从 339 nm 红移至 345 nm(1:0)和 1:2(apoA-I:SAA),表明 SAA 的加入使 rHDL 中 apoA-I 的二级结构不稳定。用尿素处理从 0 M 到 8 M 变性时,SAA 仅显示 WMF 红移 3nm,而 apoA-I 显示 WMF 红移 16nm,表明 SAA 对变性具有抵抗力,apoA-I 的构象灵活性高于 SAA。apoA-I 在果糖存在下的糖化反应通过添加 SAA 以剂量依赖的方式加速了 1.8 倍,而单独的 apoA-I 则加速了 1.8 倍。总之,SAA 掺入 rHDL 会损害 apoA-I 的结构稳定性,并加剧 HDL 和 apoA-I 的糖化。