Anal Chem. 2020 Apr 7;92(7):5473-5481. doi: 10.1021/acs.analchem.0c00222. Epub 2020 Mar 17.
In general immunoassays, secondary antibodies are covalently linked with enzymes and bind to the Fc region of target-bound primary antibodies to amplify signals of low-abundant target molecules. The antibodies themselves are obtained from large mammals and are further modified with enzymes. In this study, we developed novel recombinant immunoglobulin G (IgG)-binding luciferase-based signal amplifiers (rILSAs) by genetically fusing luciferase (Nluc) with antimouse IgG1 nanobody (MG1Nb) and antibody-binding domain (ABD), individually or together, in a mix-and-match manner. We obtained three different highly pure rILSAs in large quantities using a bacterial overexpression system and one-step purification. Mouse-specific rILSA, MG1Nb-Nluc, and rabbit-specific rILSA, Nluc-ABD, selectively bound to target-molecule-bound mouse IgG1 and rabbit IgG primary antibodies, whereas the bispecific rILSA, MG1Nb-Nluc-ABD, mutually bound to both mouse IgG1 and rabbit IgG primary antibodies. All rILSAs exhibited an outstanding signal-amplifying capability comparable to those of conventional horseradish-peroxidase-conjugated secondary antibodies, regardless of the target molecules, in various immunoassay formats, such as enzyme-linked immunosorbent assay, Western blot, and lateral flow assays. Each rILSA was selected for its own individual purpose and applied to various types of target analytes, in combination with a variety of target-specific primary antibodies, effectively minimizing the use of animals as well as reducing the costs and time associated with the production and chemical conjugation of signal-amplifying enzymes.
在一般的免疫测定中,二抗通过共价键与酶结合,并与靶标结合的一抗的 Fc 区域结合,以放大低丰度靶标分子的信号。这些抗体本身来自大型哺乳动物,并进一步用酶进行修饰。在这项研究中,我们通过基因融合将荧光素酶(Nluc)与抗小鼠 IgG1 纳米抗体(MG1Nb)和抗体结合结构域(ABD)分别或混合方式组合在一起,开发了新型重组免疫球蛋白 G(IgG)结合型基于荧光素酶的信号放大器(rILSA)。我们使用细菌过表达系统和一步纯化法大量获得了三种不同的高纯度 rILSA。鼠特异性 rILSA、MG1Nb-Nluc 和兔特异性 rILSA、Nluc-ABD 分别选择性地与靶标分子结合的小鼠 IgG1 和兔 IgG 一抗结合,而双特异性 rILSA、MG1Nb-Nluc-ABD 则相互结合。所有 rILSA 均表现出出色的信号放大能力,与各种免疫测定格式(如酶联免疫吸附测定、Western blot 和侧向流动测定)中的常规辣根过氧化物酶缀合的二抗相当,而与靶标分子无关。每种 rILSA 都因其自身的目的而被选择,并与各种类型的靶标分析物结合,与各种靶标特异性一抗结合,有效地减少了动物的使用,并降低了与信号放大酶的生产和化学缀合相关的成本和时间。