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Engineering and functional evaluation of a single-chain antibody against HIV-1 external glycoprotein gp120

机译:抗HIV-1外部糖蛋白gp120的单链抗体的工程和功能评估

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摘要

The HIV-1 envelope glycoprotein surface subunit gp120 is an attractive target for molecular intervention. This is because anti-HIV-1 gp120 neutralizing antibodies display the potential ability to inhibit HIV-1 infection. The present investigation describes the construction of a genetically engineered single chain antibody (scFv102) against HIV-1 gp120, its expression and functional evaluation. The parental hybridoma cell line (102) produces an immunoglobulin directed against the conserved CD4-binding region of gp120. cDNAs encoding the variable regions of the heavy (VH) and light (VL) chains were prepared by reverse transcription PCR and linked together with an oligonucleotide encoding a linker peptide (Gly4Ser)3 to produce a single chain antibody gene. The resulting DNA construct was cloned into a prokaryotic expression vector (pET28) and recombinant scFv102 was expressed in Eserichia coli as an insoluble protein. The denatured scFv102 was refolded and purified by immobilized metal ion affinity chromatography. Purified scFv102 had the same specificity as the intact IgG in immuno-blotting assays and immuno-fluorescence (IF) detection, but ELISA analyses demonstrated the affinity of scFv102 to be 5-fold lower than that of the parental monoclonal antibody. In neutralization assays, scFv102 at concentrations lower than 40 µg/ml exhibited efficient interference with viral replication and inhibition of viral infection (90%) across a range of primary isolates of subtype B HIV-1. These results suggest that the constructed anti-HIV-1 gp120 scFv102 has good biological activity and can potentially be used for in vitro diagnostic and in vivo therapeutic applications.
机译:HIV-1包膜糖蛋白表面亚基gp120是分子干预的诱人靶标。这是因为抗HIV-1 gp120中和抗体显示出抑制HIV-1感染的潜在能力。本研究描述了针对HIV-1 gp120的基因工程单链抗体(scFv102)的构建,其表达和功能评估。亲本杂交瘤细胞系(102)产生针对gp120的保守CD4结合区的免疫球蛋白。通过逆转录PCR制备编码重链(VH)和轻链(VL)可变区的cDNA,并与编码接头肽(Gly4Ser)3的寡核苷酸连接在一起,以产生单链抗体基因。将得到的DNA构建体克隆到原核表达载体(pET28)中,并且重组scFv102在大肠杆菌中表达为不溶性蛋白质。将变性的scFv102重折叠并通过固定的金属离子亲和色谱法纯化。纯化的scFv102在免疫印迹测定和免疫荧光(IF)检测中具有与完整IgG相同的特异性,但ELISA分析表明,scFv102的亲和力比亲本单克隆抗体低5倍。在中和试验中,浓度低于40 µg / ml的scFv102在一系列B型HIV-1亚型主要分离株中均表现出有效的干扰病毒复制和抑制病毒感染(90%)的作用。这些结果表明,构建的抗HIV-1 gp120 scFv102具有良好的生物学活性,可以潜在地用于体外诊断和体内治疗应用。

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