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Serum amyloid A self-assembles with phospholipids to form stable protein-rich nanoparticles with a distinct structure: A hypothetical function of SAA as a ‘‘molecular mop in immune response

机译:血清淀粉样蛋白A与磷脂自组装形成具有独特结构的稳定的富含蛋白质的纳米颗粒:假设SAA作为免疫反应中的分子拖把

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摘要

Serum amyloid A (SAA) is an acute-phase protein whose action in innate immunity and lipid homeostasis is unclear. Most circulating SAA binds plasma high-density lipoproteins (HDL) and reroutes lipid transport. In vivo SAA binds existing lipoproteins or generates them de novo upon lipid uptake from cells. We explored the products of SAA-lipid interactions and lipoprotein remodeling in vitro. SAA complexes with palmitoyl-oleoyl phosphocholine (POPC) were analyzed for structure and stability using circular dichroism and fluorescence spectroscopy, electron microscopy, gel electrophoresis and gel filtration. The results revealed the formation of 8–11 nm lipoproteins that were ~50% a-helical and stable at near-physiological conditions but were irreversibly remodeled at Tm ~ 52 °C. Similar HDL-size nanoparticles formed spontaneously at ambient conditions or upon thermal remodeling of parent lipoproteins containing various amounts of proteins and lipids, including POPC and cholesterol. Therefore, such HDL-size particles formed stable kinetically accessible structures in a wide range of conditions. Based on their size and stoichiometry, each particle contained about 12 SAA and 72 POPC molecules, with a pro-tein:lipid weight ratio circa 2.5:1, suggesting a structure distinct from HDL. High stability of these nanoparticles and their HDL-like size suggest that similar lipoproteins may form in vivo during inflammation or injury when SAA concentration is high and membranes from dead cells require rapid removal. We speculate that solubilization of membranes by SAA to generate lipoproteins in a spontaneous energy-independent process constitutes the primordial function of this ancient protein, providing the first line of defense in clearing cell debris from the injured sites.
机译:血清淀粉样蛋白A(SAA)是一种急性期蛋白,尚不清楚其在先天免疫和脂质稳态中的作用。大多数循环中的SAA结合血浆高密度脂蛋白(HDL),并重新确定脂质转运的路径。体内SAA结合现有脂蛋白或在脂质从细胞中吸收后重新产生。我们探索了SAA-脂质相互作用和脂蛋白重塑的体外产物。使用圆二色性和荧光光谱,电子显微镜,凝胶电泳和凝胶过滤分析了SAA与棕榈酰-油酰磷酸胆碱(POPC)的复合物的结构和稳定性。结果显示8-11 nm脂蛋白的形成为〜50%a-螺旋,在接近生理条件下稳定,但在Tm〜52°C时不可逆地重塑。类似的HDL大小的纳米粒子在环境条件下或包含多种量的蛋白质和脂质(包括POPC和胆固醇)的母体脂蛋白热重塑后自然形成。因此,这种HDL尺寸的颗粒在宽范围的条件下形成稳定的动力学可及结构。根据它们的大小和化学计量,每个粒子包含约12个SAA和72个POPC分子,其蛋白:脂质的重量比约为2.5∶1,表明其结构不同于HDL。这些纳米颗粒的高稳定性及其类似HDL的大小表明,当SAA浓度高且死细胞膜需要快速清除时,类似的脂蛋白可能在炎症或损伤过程中在体内形成。我们推测,SAA溶解膜以自发的能量独立过程产生脂蛋白构成了这种古老蛋白的原始功能,为清除受损部位的细胞碎片提供了第一道防线。

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