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具有αα拓扑结构的工程化表面免疫原性决定簇的合成与生物物理表征

Synthesis and biophysical characterization of engineered topographic immunogenic determinants with alpha alpha topology.

作者信息

Kaumaya P T, Berndt K D, Heidorn D B, Trewhella J, Kezdy F J, Goldberg E

机构信息

Department of Biochemistry and Molecular Biology and Cell Biology, Northwestern University, Evanston, Illinois 60208.

出版信息

Biochemistry. 1990 Jan 9;29(1):13-23. doi: 10.1021/bi00453a002.

Abstract

Model peptides with predetermined secondary, tertiary, and quaternary conformation have been successfully designed, synthesized, and characterized in an attempt to mimic the three-dimensional structure of an antigenic determinant. This work is a continuing effort to map the antigenic structure of the protein antigen lactate dehydrogenase C4 (LDH-C4) to develop a contraceptive vaccine. A putative topographic determinant with alpha alpha topology which associates into four-helix bundles was designed on the basis of the framework model of protein folding. An idealized amphiphilic 18-residue sequence (alpha 1) and a 40-residue alpha alpha fold (alpha 3) have been shown to form stable 4-helix structures in solution with a free energy of association on the order of -20.8 kcal/mol (tetramerization of alpha 1) and -7.8 kcal/mol (dimerization of alpha 3). Both alpha 1 and alpha 3 form stable monolayers at the air-water interface. The CD spectra of Langmuir-Blodgett monolayers are characteristically alpha-helical. Both CD and FTIR spectroscopic studies reval a high degree of secondary structure. The SAXS data strongly suggest that the helices are arranged in a four-helix bundle since the radius of gyration of 17.2 A and the vector distribution function are indicative of a prolate ellipsoid of axial dimensions and molecular weight appropriate for the four-helix bundle. The major contribution to the formation and stabilization of alpha 1 and alpha 3 is believed to be hydrophobic interaction between the amphiphilic alpha-helices. The displayed heptad repeat, helix dipole, ion pairs, and the loop sequence may have also contributed to the overall stability and antiparallel packing of the helices. A detailed structural analysis of a relevant topographic immunogenic determinant will elucidate the nature of antigen-antibody interactions as well as provide insight into protein folding intermediates.

摘要

为了模拟抗原决定簇的三维结构,已经成功设计、合成并表征了具有预定二级、三级和四级构象的模型肽。这项工作是为绘制蛋白质抗原乳酸脱氢酶C4(LDH - C4)的抗原结构以开发避孕疫苗而持续进行的努力。基于蛋白质折叠的框架模型,设计了一种具有αα拓扑结构并形成四螺旋束的推定拓扑决定簇。一个理想化的两亲性18残基序列(α1)和一个40残基的αα折叠(α3)已被证明在溶液中形成稳定的4螺旋结构,缔合自由能约为 - 20.8千卡/摩尔(α1的四聚化)和 - 7.8千卡/摩尔(α3的二聚化)。α1和α3在空气 - 水界面均形成稳定的单分子层。朗缪尔 - 布洛杰特单分子层的圆二色光谱具有典型的α螺旋特征。圆二色光谱和傅里叶变换红外光谱研究均显示出高度的二级结构。小角X射线散射数据强烈表明螺旋排列成四螺旋束,因为17.2 Å的回转半径和矢量分布函数表明是一个轴向尺寸和分子量适合四螺旋束的长椭球体。据信,对α1和α3形成和稳定起主要作用的是两亲性α螺旋之间的疏水相互作用。所显示的七肽重复序列、螺旋偶极、离子对和环序列可能也有助于螺旋的整体稳定性和反平行堆积。对相关拓扑免疫原性决定簇进行详细的结构分析将阐明抗原 - 抗体相互作用的性质,并为蛋白质折叠中间体提供深入了解。

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