Department of Plant Systems Biology, VIB, 9052, Ghent, Belgium.
Plant Mol Biol. 2014 Jan;84(1-2):83-93. doi: 10.1007/s11103-013-0118-0. Epub 2013 Aug 21.
Antibodies and antibody derived fragments are excellent tools for the detection and purification of proteins. However, only few antibodies targeting Arabidopsis seed proteins are currently available. Here, we evaluate the process to make antibody libraries against crude protein extracts and more particularly to generate a VHH phage library against native Arabidopsis thaliana seed proteins. After immunising a dromedary with a crude Arabidopsis seed extract, we cloned the single-domain antigen-binding fragments from their heavy-chain only antibodies in a phage display vector and selected nanobodies (VHHs) against native Arabidopsis seed proteins. For 16 VHHs, the corresponding antigens were identified by affinity purification and MS/MS analysis. They were shown to bind the major Arabidopsis seed storage proteins albumin and globulin (14 to albumin and 2 to globulin). All 16 VHHs were suitable primary reagents for the detection of the Arabidopsis seed storage proteins by ELISA. Furthermore, several of the anti-albumin VHHs were used successfully for storage protein localisation via electron microscopy. The easy cloning, selection and production, together with the demonstrated functionality and applicability, strongly suggest that the VHH antibody format will play a more prominent role in future protein research, in particular for the study of native proteins.
抗体和抗体衍生片段是检测和纯化蛋白质的极好工具。然而,目前针对拟南芥种子蛋白的抗体很少。在这里,我们评估了针对粗蛋白提取物制备抗体文库的过程,特别是针对天然拟南芥种子蛋白生成 VHH 噬菌体文库的过程。用粗拟南芥种子提取物免疫单峰驼后,我们从重链抗体中克隆了单域抗原结合片段,并在噬菌体展示载体中进行了筛选,得到了针对天然拟南芥种子蛋白的纳米抗体(VHH)。对于 16 个 VHH,通过亲和纯化和 MS/MS 分析鉴定了相应的抗原。它们被证明与拟南芥种子贮藏蛋白白蛋白和球蛋白(14 个与白蛋白结合,2 个与球蛋白结合)结合。所有 16 个 VHH 都可通过 ELISA 作为检测拟南芥种子贮藏蛋白的初级试剂。此外,一些抗白蛋白 VHH 还成功地用于通过电子显微镜进行贮藏蛋白定位。VHH 抗体形式易于克隆、选择和生产,并且功能和适用性已经得到证实,这强烈表明它将在未来的蛋白质研究中发挥更重要的作用,特别是在天然蛋白质的研究方面。