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Inexpensive Designer Antigen for Anti-HIV Antibody Detection with High Sensitivity and Specificity

机译:低价设计抗原具有高灵敏度和特异性的抗HIV抗体检测

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摘要

A novel recombinant multiepitope protein (MEP) has been designed that consists of four linear, immunodominant, and phylogenetically conserved epitopes, taken from human immunodeficiency virus (HIV)-encoded antigens that are used in many third-generation immunoassay kits. This HIV-MEP has been evaluated for its diagnostic potential in the detection of anti-HIV antibodies in human sera. A synthetic MEP gene encoding these epitopes, joined by flexible peptide linkers in a single open reading frame, was designed and overexpressed in Escherichia coli. The recombinant HIV-MEP was purified using a single affinity step, yielding >20 mg pure protein/liter culture, and used as the coating antigen in an in-house immunoassay. Bound anti-HIV antibodies were detected by highly sensitive time-resolved fluorometry, using europium(III) chelate-labeled anti-human antibody. The sensitivity and specificity of the HIV-MEP were evaluated using Boston Biomedica worldwide HIV performance, HIV seroconversion, and viral coinfection panels and were found to be comparable with those of commercially available anti-HIV enzyme immunoassay (EIA) kits. The careful choice of epitopes, high epitope density, and an E. coli-based expression system, coupled with a simple purification protocol and the use of europium(III) chelate-labeled tracer, provide the capability for the development of an inexpensive diagnostic test with high degrees of sensitivity and specificity.
机译:已经设计了一种新颖的重组多表位蛋白(MEP),该蛋白由四个线性,免疫显性和系统发育保守的表位组成,这些表位取自许多第三代免疫分析试剂盒中使用的人免疫缺陷病毒(HIV)编码的抗原。已对该HIV-MEP进行了人类血清中抗HIV抗体检测的诊断潜力评估。编码这些表位的合成MEP基因,在单个开放阅读框中通过柔性肽接头连接,并在大肠杆菌中过表达。重组HIV-MEP使用一个亲和步骤进行纯化,可产生> 20 mg的纯蛋白/升培养物,并在内部免疫分析中用作包被抗原。使用highly(III)螯合物标记的抗人抗体,通过高灵敏度的时间分辨荧光法检测结合的抗HIV抗体。 HIV-MEP的敏感性和特异性已通过Boston Biomedica在全球范围内的HIV性能,HIV血清转化和病毒共感染检测小组进行了评估,并与市售抗HIV酶免疫测定(EIA)试剂盒相当。精心选择的表位,高的表位密度和基于大肠杆菌的表达系统,再加上简单的纯化方案以及the(III)螯合物标记的示踪剂的使用,为开发廉价的诊断测试提供了能力具有高度的敏感性和特异性。

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