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溶液中的小鼠载脂蛋白血清淀粉样蛋白A形成一种含有中央通道的六聚体。

Murine apolipoprotein serum amyloid A in solution forms a hexamer containing a central channel.

作者信息

Wang Limin, Lashuel Hilal A, Walz Thomas, Colon Wilfredo

机构信息

Department of Chemistry, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Dec 10;99(25):15947-52. doi: 10.1073/pnas.252508399. Epub 2002 Nov 27.

Abstract

Serum amyloid A (SAA) is a small apolipoprotein that binds to high-density lipoproteins in the serum. Although SAA seems to play a role in host defense and lipid transport and metabolism, its specific functions have not been defined. Despite the growing implications that SAA plays a role in the pathology of various diseases, a high-resolution structure of SAA is lacking because of limited solubility in the high-density lipoprotein-free form. In this study, complementary methods including glutaraldehyde cross-linking, size-exclusion chromatography, and sedimentation-velocity analytical ultracentrifugation were used to show that murine SAA2.2 in aqueous solution exists in a monomer-hexamer equilibrium. Electron microscopy of hexameric SAA2.2 revealed that the subunits are arranged in a ring forming a putative central channel. Limited trypsin proteolysis and mass spectrometry analysis identified a significantly protease-resistant SAA2.2 region comprising residues 39-86. The isolated 39-86 SAA2.2 fragment did not hexamerize, suggesting that part of the N terminus is involved in SAA2.2 hexamer formation. Circular-dichroism spectrum deconvolution and secondary-structure prediction suggest that SAA2.2 contains approximately 50% of its residues in alpha-helical conformation and <10% in beta-structure. These findings are consistent with the recent discovery that human SAA1.1 forms a membrane channel and have important implications for understanding the 3D structure, multiple functions, and pathological roles of this highly conserved protein.

摘要

血清淀粉样蛋白A(SAA)是一种与血清中的高密度脂蛋白结合的小载脂蛋白。尽管SAA似乎在宿主防御以及脂质运输和代谢中发挥作用,但其具体功能尚未明确。尽管越来越多的研究表明SAA在各种疾病的病理过程中起作用,但由于其在无高密度脂蛋白形式下的溶解度有限,因此缺乏SAA的高分辨率结构。在本研究中,采用了包括戊二醛交联、尺寸排阻色谱和沉降速度分析超速离心等互补方法,以表明水溶液中的小鼠SAA2.2存在单体-六聚体平衡。六聚体SAA2.2的电子显微镜显示,亚基排列成环,形成一个假定的中央通道。有限的胰蛋白酶蛋白水解和质谱分析鉴定出一个显著抗蛋白酶的SAA2.2区域,其包含39-86位残基。分离出的39-86 SAA2.2片段没有形成六聚体,这表明N端的一部分参与了SAA2.2的六聚体形成。圆二色光谱去卷积和二级结构预测表明,SAA2.2约50%的残基处于α-螺旋构象,<10%处于β-结构。这些发现与最近发现的人类SAA1.1形成膜通道的结果一致,并且对于理解这种高度保守蛋白质的三维结构、多种功能和病理作用具有重要意义。

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