Wang Y, Wang K, Jette D C, Wishart D S
Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, Alberta, T6G 2N8, Canada.
Protein Expr Purif. 2001 Dec;23(3):419-25. doi: 10.1006/prep.2001.1521.
Prostate-specific antigen (PSA) is a widely used marker for screening and monitoring prostate cancer. Because PSA levels are normally quite low, an antibody-based assay must be used to detect PSA. However, not all PSA-specific antibodies bind equally well to PSA or to its different isoforms. Therefore, a better understanding of how PSA interacts with PSA-specific antibodies is of considerable clinical interest. B80.3 is a widely used murine monoclonal anti-PSA antibody (IgG), which has very high affinity for both free and alpha-anti-chymotrypsin complexed PSA. More importantly, its gene sequence is known-making it one of only two anti-PSA antibodies that has been fully cloned and sequenced. To better elucidate the interaction between PSA and B80.3, a single-chain antibody fragment, derived from the variable domain of B80.3 (scFvB80), was cloned into a pPIC9 vector and expressed in Pichia pastoris. The secreted protein was purified using a three-step protocol beginning with a 50% ammonium sulfate precipitation step, followed by a T-gel thio-affinity step and concluding with a simple anion-exchange (DE52) filtration step. NMR studies indicate the protein is correctly folded while competitive enzyme-linked immunosorbant assays show that the purified scFvB80 has approximately 20% of the activity of the full-length B80.3 antibody. The protocol described here provides a quick and convenient route to prepare large quantities of very pure anti-PSA antibody fragments (15-20 mg/L culture medium) for detailed structural and biophysical characterization.
前列腺特异性抗原(PSA)是一种广泛用于筛查和监测前列腺癌的标志物。由于PSA水平通常相当低,必须使用基于抗体的检测方法来检测PSA。然而,并非所有PSA特异性抗体与PSA或其不同异构体的结合效果都相同。因此,更好地了解PSA与PSA特异性抗体之间的相互作用具有相当大的临床意义。B80.3是一种广泛使用的鼠单克隆抗PSA抗体(IgG),对游离和α-抗糜蛋白酶复合的PSA都具有非常高的亲和力。更重要的是,其基因序列已知,这使其成为仅有的两种已被完全克隆和测序的抗PSA抗体之一。为了更好地阐明PSA与B80.3之间的相互作用,将源自B80.3可变域的单链抗体片段(scFvB80)克隆到pPIC9载体中,并在毕赤酵母中表达。分泌的蛋白质通过三步方案进行纯化,首先是50%硫酸铵沉淀步骤,然后是T凝胶硫醇亲和步骤,最后是简单的阴离子交换(DE52)过滤步骤。核磁共振研究表明该蛋白质折叠正确,而竞争性酶联免疫吸附测定表明纯化的scFvB80具有全长B80.3抗体约20%的活性。本文所述的方案提供了一条快速便捷的途径,可制备大量非常纯的抗PSA抗体片段(15 - 20 mg/L培养基),用于详细的结构和生物物理表征。