Department of Experimental Medical Science, Lund University, S-221 84 Lund, Sweden.
J Biol Chem. 2011 Jan 28;286(4):2966-75. doi: 10.1074/jbc.M110.163097. Epub 2010 Nov 3.
Apolipoprotein A-I (apoA-I) is the major protein component of high density lipoproteins (HDL) and a critical element of cholesterol metabolism. To better elucidate the role of the apoA-I structure-function in cholesterol metabolism, the conformation of the apoA-I N terminus (residues 6-98) on nascent HDL was examined by electron paramagnetic resonance (EPR) spectroscopic analysis. A series of 93 apoA-I variants bearing single nitroxide spin label at positions 6-98 was reconstituted onto 9.6-nm HDL particles (rHDL). These particles were subjected to EPR spectral analysis, measuring regional flexibility and side chain solvent accessibility. Secondary structure was elucidated from side-chain mobility and molecular accessibility, wherein two major α-helical domains were localized to residues 6-34 and 50-98. We identified an unstructured segment (residues 35-39) and a β-strand (residues 40-49) between the two helices. Residues 14, 19, 34, 37, 41, and 58 were examined by EPR on 7.8, 8.4, and 9.6 nm rHDL to assess the effect of particle size on the N-terminal structure. Residues 14, 19, and 58 showed no significant rHDL size-dependent spectral or accessibility differences, whereas residues 34, 37, and 41 displayed moderate spectral changes along with substantial rHDL size-dependent differences in molecular accessibility. We have elucidated the secondary structure of the N-terminal domain of apoA-I on 9.6 nm rHDL (residues 6-98) and identified residues in this region that are affected by particle size. We conclude that the inter-helical segment (residues 35-49) plays a role in the adaptation of apoA-I to the particle size of HDL.
载脂蛋白 A-I(apoA-I)是高密度脂蛋白(HDL)的主要蛋白成分,也是胆固醇代谢的关键元素。为了更好地阐明 apoA-I 结构-功能在胆固醇代谢中的作用,通过电子顺磁共振(EPR)光谱分析研究了新生 HDL 上 apoA-I N 端(残基 6-98)的构象。将一系列在位置 6-98 处带有单个氮氧自由基自旋标记的 93 种 apoA-I 变体重新构建到 9.6nm HDL 颗粒(rHDL)上。对这些颗粒进行 EPR 光谱分析,测量区域柔韧性和侧链溶剂可及性。从侧链流动性和分子可及性中阐明二级结构,其中两个主要的α-螺旋域定位于残基 6-34 和 50-98。我们确定了一个无规卷曲片段(残基 35-39)和一个β-折叠(残基 40-49)在两个螺旋之间。通过 EPR 研究残基 14、19、34、37、41 和 58 在 7.8、8.4 和 9.6nm rHDL 上的结构,以评估颗粒大小对 N 端结构的影响。残基 14、19 和 58 显示出与 rHDL 大小无关的显著光谱或可及性差异,而残基 34、37 和 41 显示出适度的光谱变化以及与 rHDL 大小依赖性分子可及性的实质性差异。我们已经阐明了 9.6nm rHDL(残基 6-98)上 apoA-I N 端结构域的二级结构,并确定了该区域中受颗粒大小影响的残基。我们得出结论,螺旋间片段(残基 35-49)在 apoA-I 适应 HDL 颗粒大小时发挥作用。