Miura Kenji, Yoshida Hideki, Nosaki Shohei, Kaneko Mika K, Kato Yukinari
Faculty of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Japan.
Tsukuba-Plant Innovation Research Center, University of Tsukuba, Tsukuba, Japan.
Front Plant Sci. 2020 Sep 10;11:510444. doi: 10.3389/fpls.2020.510444. eCollection 2020.
An affinity tag system requires both high affinity and specificity. The RAP tag epitope DMVNPGLEDRIE, derived from rat podoplanin (PDPN), is specifically recognized by PMab-2 monoclonal antibodies in rats. Here, we demonstrated that high levels of PMab-2 can be produced in and plant-derived PMab-2 possesses similar activity to CHO-derived PMab-2, and the RAP tag presents a useful tagging system for detecting and purifying proteins from plant cells. The heavy chain of PMab-2 fused with KDEL, an endoplasmic reticulum retention sequence, and the light chain of the antibody were introduced into by agroinfiltration. The expression of PMab-2 peaked 4 days after agroinfiltration, and approximately 0.3 mg/g fresh weight of the antibody was accumulated. After purification, the plant-derived PMab-2 successfully recognized rat PDPN expressed in CHO-K1 cells and exhibited almost the same binding activity as CHO-derived PMab-2. The RAP-tagged proteins expressed in plant cells were specifically recognized by PMab-2. These results indicate that PMab-2 can accumulate at high levels in and is easily purified and that the RAP tagging system presents a useful tool for detecting and purifying proteins of interest in plant cells.
亲和标签系统需要高亲和力和特异性。源自大鼠血小板反应蛋白-1(PDPN)的RAP标签表位DMVNPGLEDRIE可被大鼠中的PMab-2单克隆抗体特异性识别。在此,我们证明了在植物中可产生高水平的PMab-2,且植物来源的PMab-2与中国仓鼠卵巢细胞(CHO)来源的PMab-2具有相似的活性,并且RAP标签为从植物细胞中检测和纯化蛋白质提供了一种有用的标签系统。通过农杆菌浸润将与内质网滞留序列KDEL融合的PMab-2重链和抗体轻链导入植物中。农杆菌浸润后4天,PMab-2的表达达到峰值,积累了约0.3 mg/g鲜重的抗体。纯化后,植物来源的PMab-2成功识别了CHO-K1细胞中表达的大鼠PDPN,并表现出与CHO来源的PMab-2几乎相同的结合活性。植物细胞中表达的RAP标签蛋白可被PMab-2特异性识别。这些结果表明,PMab-2可在植物中高水平积累且易于纯化,并且RAP标签系统为检测和纯化植物细胞中感兴趣的蛋白质提供了一种有用的工具。