首页> 外文期刊>Journal of Immunological Methods >Construction and characterization of affibody-Fc chimeras produced in Escherichia coli.
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Construction and characterization of affibody-Fc chimeras produced in Escherichia coli.

机译:在大肠杆菌中产生的亲和体-Fc嵌合体的构建和表征。

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Affibody-Fc chimeras were constructed by genetic fusion between different affibody affinity proteins with prescribed specificities and an Fc fragment derived from human IgG. Using affibody ligands previously selected for binding to respiratory syncytial virus (RSV) surface protein G and Thermus aquaticus (Taq) DNA polymerase, respectively, affibody-Fc fusion proteins showing spontaneous Fc fragment-mediated homodimerization via disulfide bridges were produced in Escherichia coli and affinity purified on protein A Sepharose from bacterial periplasms at yields ranging between 1 and 6 mg/l culture. Further characterization of the chimeras using biosensor technology showed that the affibody moieties have retained high selectivities for their respective targets after fusion to the Fc fragment. Avidity effects in the target binding were observed for the affibody-Fc chimeras compared to monovalent affibody fusion proteins, indicating that both affibody moieties in the chimeras were accessible and contributed in the binding. Fusion of a head-to-tail dimeric affibody moiety to the Fc fragment resulted in tetravalent affibody constructs which showed even more pronounced avidity effects. In addition, the Fc moiety of the chimeras was demonstrated to be specifically recognized by anti-human IgG antibody enzyme conjugates. One application for this class of "artificial antibodies" was demonstrated in a western blotting experiment in which one of the anti-RSV surface protein G affibody-Fc chimeras was demonstrated to be useful for specific detection of the target protein in a complex background consisting of a total E. coli lysate. The results show that through the replacement of the Fab portion of an antibody for an alternative binding domain based on a less complicated structure, chimeric proteins compatible with bacterial production routes containing both antigen recognition domains and Fc domains can be constructed. Such "artificial antibodies" should be interesting alternatives to, for example, whole antibodies or scFv-Fc fusions as detection devices and in diagnostic or therapeutic applications.
机译:通过具有指定特异性的不同亲和体亲和蛋白与衍生自人IgG的Fc片段之间的基因融合,构建亲和体-Fc嵌合体。使用先前分别选择与呼吸道合胞病毒(RSV)表面蛋白G和水生栖热菌(Taq)DNA聚合酶结合的亲和体配体,在大肠杆菌中产生了亲和力Fc融合蛋白,该蛋白通过二硫键介导了自发Fc片段介导的同二聚作用,并具有亲和力从细菌周质中的蛋白A Sepharose上纯化得到,产量在1-6 mg / l之间。使用生物传感器技术对嵌合体进行进一步表征表明,亲和体部分与Fc片段融合后,对其各自的靶标保留了较高的选择性。与单价亲和体融合蛋白相比,亲和体-Fc嵌合体在靶结合中的亲和力效应被观察到,表明嵌合体中的两个亲和体部分都是可及的并有助于结合。从头到尾的二聚体亲和体部分与Fc片段的融合产生了四价亲和体构建体,其显示出甚至更明显的亲和力作用。另外,证明了嵌合体的Fc部分被抗人IgG抗体酶缀合物特异性识别。在蛋白质印迹实验中证明了此类“人工抗体”的一种应用,其中一种抗RSV表面蛋白G affibody-Fc嵌合体被证明可用于特异性检测目标蛋白,其复杂背景包括总大肠杆菌裂解物。结果表明,通过基于较不复杂的结构将抗体的Fab部分替换为替代的结合结构域,可以构建与包含抗原识别结构域和Fc结构域的细菌生产途径相容的嵌合蛋白。这样的“人工抗体”应该是例如完整抗体或scFv-Fc融合体的有趣替代品,作为检测装置以及在诊断或治疗应用中。

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