Kanje Sara, Hober Sophia
AlbaNova University Centre, KTH - Royal Institute of Technology, Department of Protein Technology, Stockholm, Sweden.
Biotechnol J. 2015 Apr;10(4):564-74. doi: 10.1002/biot.201400808.
Antibodies are important molecules in many research fields, where they play a key role in various assays. Antibody labeling is therefore of great importance. Currently, most labeling techniques take advantage of certain amino acid side chains that commonly appear throughout proteins. This makes it hard to control the position and exact degree of labeling of each antibody. Hence, labeling of the antibody may affect the antibody-binding site. This paper presents a novel protein domain based on the IgG-binding domain C2 of streptococcal protein G, containing the unnatural amino acid BPA, that can cross-link other molecules. This novel domain can, with improved efficiency compared to previously reported similar domains, site-specifically cross-link to IgG at the Fc region. An efficient method for simultaneous in vivo incorporation of BPA and specific biotinylation in a flask cultivation of Escherichia coli is described. In comparison to a traditionally labeled antibody sample, the C2-labeled counterpart proved to have a higher proportion of functional antibodies when immobilized on a solid surface and the same limit of detection in an ELISA. This method of labeling is, due to its efficiency and simplicity, of high interest for all antibody-based assays where it is important that labeling does not interfere with the antibody-binding site.
抗体在许多研究领域都是重要的分子,在各种检测中发挥着关键作用。因此,抗体标记非常重要。目前,大多数标记技术利用的是蛋白质中普遍存在的某些氨基酸侧链。这使得难以控制每个抗体的标记位置和精确程度。因此,抗体的标记可能会影响抗体结合位点。本文提出了一种基于链球菌蛋白G的IgG结合结构域C2的新型蛋白质结构域,它含有非天然氨基酸BPA,能够交联其他分子。与先前报道的类似结构域相比,这个新型结构域能以更高的效率在Fc区域位点特异性地与IgG交联。本文描述了一种在大肠杆菌摇瓶培养中同时体内掺入BPA和进行特异性生物素化的有效方法。与传统标记的抗体样品相比,固定在固体表面时,C2标记的对应物被证明具有更高比例的功能性抗体,并且在酶联免疫吸附测定(ELISA)中有相同的检测限。由于其效率和简便性,这种标记方法对于所有基于抗体的检测都非常有吸引力,在这些检测中,重要的是标记不会干扰抗体结合位点。