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A toolbox of anti-mouse and anti-rabbit IgG secondary nanobodies.

机译:抗小鼠和抗兔IgG二级纳米抗体的工具箱。

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摘要

Polyclonal anti-immunoglobulin G (anti-IgG) secondary antibodies are essential tools for many molecular biology techniques and diagnostic tests. Their animal-based production is, however, a major ethical problem. Here, we introduce a sustainable alternative, namely nanobodies against all mouse IgG subclasses and rabbit IgG. They can be produced at large scale in Escherichia coli and could thus make secondary antibody production in animals obsolete. Their recombinant nature allows fusion with affinity tags or reporter enzymes as well as efficient maleimide chemistry for fluorophore coupling. We demonstrate their superior performance in Western blotting, in both peroxidase- and fluorophore-linked form. Their site-specific labeling with multiple fluorophores creates bright imaging reagents for confocal and superresolution microscopy with much smaller label displacement than traditional secondary antibodies. They also enable simpler and faster immunostaining protocols, and allow multitarget localization with primary IgGs from the same species and of the same class.
机译:多克隆抗免疫球蛋白G(抗IgG)二抗是许多分子生物学技术和诊断测试必不可少的工具。然而,它们以动物为基础的生产是一个主要的道德问题。在这里,我们介绍了一种可持续的替代方法,即针对所有小鼠IgG亚类和兔IgG的纳米抗体。它们可以在大肠杆菌中大规模生产,因此可以淘汰动物中的第二抗体生产。它们的重组性质允许与亲和标签或报道酶融合,以及用于荧光团偶联的有效马来酰亚胺化学。我们证明了它们在过氧化物酶和荧光团连接形式的蛋白质印迹中的优越性能。其具有多个荧光基团的位点特异性标记为共聚焦和超分辨率显微镜创建了明亮的成像试剂,其标记位移比传统的二抗小得多。它们还可以实现更简单,更快速的免疫染色方案,并允许来自相同物种和相同类别的一级IgG进行多目标定位。

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