Omidfar Kobra, Rasaee Mohhamad Javad, Kashanian Soheila, Paknejad Malieheh, Bathaie Zahra
Endocrinology and Metabolism Research Centre, Tehran University of Medical Sciences, Tehran, Iran.
Biotechnol Appl Biochem. 2007 Jan;46(Pt 1):41-9. doi: 10.1042/BA20060104.
Camelids have a unique immune system capable of producing heavy-chain antibodies lacking the light chains and CH1 (constant heavy-chain domain 1). It has been shown that, in contrast with conventional antibody fragments, the variable domains of these heavy-chain antibodies are functional at or after exposure to high temperatures. In the present study, the VHH (variable domain of heavy-chain antibody) camel antibody was subcloned into vector Ppiczc and expressed in Pichia pastoris. ORB1-83 VHH antibody recognizes the external domain of the mutant EGFR [EGF (epidermal growth factor) receptor], EGFR VIII. This tumour-specific antigen is ligand-independent, contains a constitutively active tyrosine kinase domain and has been shown to be present in a number of human malignancies. We report here that, although expression from P. pastoris resulted in a significantly increased level of expression of the anti-EGFR VIII VHH antibodies compared with Escherichia coli [Omidfar, Rasaee, Modjtahedi, Forouzandeh, Taghikhani, Bakhtiari, Paknejad and Kashanian (2004) Tumor Biol. 25, 179-187; Omidfar, Rasaee, Modjtahedi, Forouzandeh, Taghikhani and Golmakany (2004) Tumor Biol. 25, 296-305], this antibody selectively bound to the EGFR VIII peptide and reacted specifically with the immunoaffinity-purified antigen from non-small-cell lung cancer. Furthermore, thermal denaturation stability and CD spectra analysis of the Camelus bactrianus (Bactrian camel) VHH and heavy-chain antibodies at different temperature proved reversibility and binding activity after heat denaturation. Our results indicate that the P. pastoris expression system may be useful for the expression of camel single domain antibody and the ability of the expressed protein to reversibly melt without aggregation, allowing it to regain binding activity after heat denaturation.
骆驼科动物拥有独特的免疫系统,能够产生缺乏轻链和CH1(恒定重链结构域1)的重链抗体。研究表明,与传统抗体片段不同,这些重链抗体的可变结构域在高温暴露时或之后仍具有功能。在本研究中,VHH(重链抗体可变结构域)骆驼抗体被亚克隆到载体Ppiczc中,并在毕赤酵母中表达。ORB1-83 VHH抗体识别突变型表皮生长因子受体(EGFR)EGFR VIII的胞外结构域。这种肿瘤特异性抗原不依赖配体,含有组成型活性酪氨酸激酶结构域,并且已证实在多种人类恶性肿瘤中存在。我们在此报告,尽管与大肠杆菌相比,毕赤酵母表达导致抗EGFR VIII VHH抗体的表达水平显著提高[奥米德法尔,拉萨伊,莫德贾赫迪,福鲁赞德,塔吉哈尼,巴赫蒂亚里,帕克尼亚德和卡沙尼安(2004年)《肿瘤生物学》25卷,第179 - 187页;奥米德法尔,拉萨伊,莫德贾赫迪,福鲁赞德,塔吉哈尼和戈尔马卡尼(2004年)《肿瘤生物学》25卷,第296 - 305页],但该抗体选择性地结合EGFR VIII肽,并与来自非小细胞肺癌的免疫亲和纯化抗原有特异性反应。此外,双峰驼VHH和重链抗体在不同温度下的热变性稳定性和圆二色光谱分析证明了热变性后的可逆性和结合活性。我们的结果表明,毕赤酵母表达系统可能有助于骆驼单域抗体的表达,并且表达的蛋白质能够可逆地解链而不聚集,使其在热变性后恢复结合活性。