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通过荧光偏振实时测量体外肽与可溶性HLA-A*0201的结合。

Real-time measurement of in vitro peptide binding to soluble HLA-A*0201 by fluorescence polarization.

作者信息

Buchli Rico, VanGundy Rodney S, Hickman-Miller Heather D, Giberson Christopher F, Bardet Wilfried, Hildebrand William H

机构信息

Pure Protein L.L.C., Oklahoma City, Oklahoma 73104-3698, USA.

出版信息

Biochemistry. 2004 Nov 23;43(46):14852-63. doi: 10.1021/bi048580q.

DOI:10.1021/bi048580q
PMID:15544356
Abstract

Measuring the interaction of class I human leukocyte antigens (HLA) and their peptide epitopes acts as a guide for the development of vaccines, diagnostics, and immune-based therapies. Here, we report the development of a sensitive biochemical assay that relies upon fluorescence polarization to indicate peptide interactions with recombinant soluble HLA proteins. It is a cell- and radioisotope-free assay that has the advantage of allowing the direct, real-time measurement of the ratio between free and bound peptide ligand in solution without separation steps. Peptide/HLA assay parameters were established using several HLA A0201-specific fluorescein isothiocyanate-labeled peptides. Optimal loading of synthetic peptides into fully assembled soluble HLA-A0201 complexes was enabled by thermal destabilization at 53 degrees C for 15 min, demonstrating that efficient peptide exchange does not require the removal of endogenous peptides from the reaction environment. An optimal ratio of three beta-2 microglobulin molecules per single HLA heavy chain was determined to maximize peptide binding. Kinetic binding studies indicate that soluble HLA-A0201/peptide interactions are characterized by a range of moderate k(on) values (1 x 10(4) to 8.7 x 10(4) M(-1) s(-1)) and slow k(off) values (1.9 x 10(-4) to 4.3 x 10(-4) s(-1)), consistent with parameters for native HLA molecules. Testing of the A0201-specific peptides with 48 additional class I molecules demonstrates that the unique peptide binding behavior of individual HLA molecules is maintained in the assay. This assay therefore represents a versatile tool for characterizing the binding of peptide epitopes during the development of class I HLA-based vaccines and immune therapies.

摘要

测量人类I类白细胞抗原(HLA)与其肽表位的相互作用可为疫苗、诊断方法和基于免疫的治疗方法的开发提供指导。在此,我们报告了一种灵敏的生化检测方法的开发,该方法依靠荧光偏振来指示肽与重组可溶性HLA蛋白的相互作用。这是一种无细胞和无放射性同位素的检测方法,其优点是无需分离步骤即可直接实时测量溶液中游离肽配体与结合肽配体的比例。使用几种HLA A0201特异性异硫氰酸荧光素标记的肽建立了肽/HLA检测参数。通过在53℃下热不稳定处理15分钟,可实现合成肽最佳地加载到完全组装的可溶性HLA-A0201复合物中,这表明有效的肽交换不需要从反应环境中去除内源性肽。确定每个单个HLA重链三个β2微球蛋白分子的最佳比例可使肽结合最大化。动力学结合研究表明,可溶性HLA-A0201/肽相互作用的特征在于一系列中等的k(on)值(1×10^4至8.7×10^4 M^-1 s^-1)和缓慢的k(off)值(1.9×10^-4至4.3×10^-4 s^-1),这与天然HLA分子的参数一致。对A0201特异性肽与另外48种I类分子的测试表明,该检测方法中保留了各个HLA分子独特的肽结合行为。因此,该检测方法是一种通用工具,可用于在基于I类HLA的疫苗和免疫治疗开发过程中表征肽表位的结合情况。

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