Development and Validation of a Fluorescence Polarization-Based Competitive Peptide-Binding Assay for HLA-A*0201A New Tool for Epitope Discovery

荧光各向异性 表位 CTL公司* 人类白细胞抗原 计算生物学 主要组织相容性复合体 配体结合分析 多路复用 化学 MHC I级 高通量筛选 免疫分析 生物 生物化学 抗原 体外 细胞毒性T细胞 生物信息学 免疫学 抗体 受体
作者
Rico Buchli,Rodney S. VanGundy,Heather D. Hickman,Christopher F. Giberson,Wilfried Bardet,William H. Hildebrand
出处
期刊:Biochemistry [American Chemical Society]
卷期号:44 (37): 12491-12507 被引量:59
标识
DOI:10.1021/bi050255v
摘要

Various approaches are currently proposed to successfully develop therapies for the prevention and treatment of infectious diseases and cancer. One of the most promising approaches is the development of vaccines that elicit cytotoxic T lymphocyte (CTL) responses. Consequently, identification and exact definition of molecular parameters involved in peptide−MHC class-I interactions of putative CTL epitopes are of prime importance for the development of immunomodulating compounds. To better facilitate epitope discovery, we developed and validated a novel state-of-the-art biochemical HLA-A*0201 assay, which is comprised of technologically advanced cutting edge reagents. The technique is based on competition and uses a FITC-labeled reference peptide and highly purified soluble HLA-A*0201 molecules to quantitatively measure the binding capacity of nonlabeled peptide candidates. Detection by fluorescence polarization allows real-time measurement of binding ratios without separation steps. During standardization, the problem of assay parameter variation is discussed, showing the dramatic influence of HLA and reference peptide concentrations as well as the choice of the reference peptide itself on IC50 determinations. For validation, a panel of 15 well-defined HLA-A*0201 ligands from various sources covering a broad range of binding affinities was tested. Binding data were used to compare against pre-existing quantitative assay systems. The results obtained demonstrated significant correlation among assay procedures, suggesting that the application of fluorescence polarization in combination with recombinant sHLA molecules is highly advantageous for the accurate assessment of peptide binding. Furthermore, the assay also features high-throughput screening capacity, providing uniquely efficient means of identifying and evaluating immune target molecules.
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