Department of Plant Systems Biology, VIB, Gent, Belgium; Department of Plant Biotechnology and Bioinformatics, Ghent University, Gent, Belgium.
Plant Biotechnol J. 2013 Oct;11(8):1006-16. doi: 10.1111/pbi.12094. Epub 2013 Aug 6.
Nanobodies® (VHHs) provide powerful tools in therapeutic and biotechnological applications. Nevertheless, for some applications, bivalent antibodies perform much better, and for this, an Fc chain can be fused to the VHH domain, resulting in a bivalent homodimeric VHH-Fc complex. However, the production of bivalent antibodies in Escherichia coli is rather inefficient. Therefore, we compared the production of VHH7 and VHH7-Fc as antibodies of interest in Arabidopsis seeds for detecting prostate-specific antigen (PSA), a well-known biomarker for prostate cancer in the early stages of tumour development. The influence of the signal sequence (camel versus plant) and that of the Fc chain origin (human, mouse or pig) were evaluated. The accumulation levels of VHHs were very low, with a maximum of 0.13% VHH of total soluble protein (TSP) in homozygous T3 seeds, while VHH-Fc accumulation levels were at least 10- to 100-fold higher, with a maximum of 16.25% VHH-Fc of TSP. Both the camel and plant signal peptides were efficiently cleaved off and did not affect the accumulation levels. However, the Fc chain origin strongly affected the degree of proteolysis, but only had a slight influence on the accumulation level. Analysis of the mRNA levels suggested that the low amount of VHHs produced in Arabidopsis seeds was not due to a failure in transcription, but rather to translation inefficiency, protein instability and/or degradation. Most importantly, the plant-produced VHH7 and VHH7-Fc antibodies were functional in detecting PSA and could thus be used for diagnostic applications.
纳米抗体(VHH)在治疗和生物技术应用中提供了强大的工具。然而,对于一些应用来说,双价抗体的性能更好,为此,可以将 Fc 链融合到 VHH 结构域中,从而产生双价同源二聚体 VHH-Fc 复合物。然而,在大肠杆菌中生产双价抗体的效率相当低。因此,我们比较了 VHH7 和 VHH7-Fc 作为感兴趣的抗体在拟南芥种子中的生产情况,用于检测前列腺特异性抗原(PSA),PSA 是肿瘤早期发展阶段前列腺癌的一种众所周知的生物标志物。评估了信号序列(骆驼与植物)和 Fc 链来源(人、鼠或猪)的影响。VHH 的积累水平非常低,在纯合 T3 种子中,VHH 占总可溶性蛋白(TSP)的最大含量为 0.13%,而 VHH-Fc 的积累水平至少高 10-100 倍,最大含量为 TSP 的 16.25%。骆驼和植物信号肽都被有效地切割下来,并且不会影响积累水平。然而,Fc 链的来源强烈影响蛋白水解的程度,但对积累水平只有轻微的影响。mRNA 水平的分析表明,拟南芥种子中产生的少量 VHH 不是由于转录失败,而是由于翻译效率低、蛋白质不稳定和/或降解。最重要的是,在植物中产生的 VHH7 和 VHH7-Fc 抗体在检测 PSA 方面是功能有效的,因此可用于诊断应用。