Graduate School of Innovative Life Science, University of Toyama, Toyama-shi, Toyama 930-8555, Japan.
BMC Biotechnol. 2011 Jul 21;11:75. doi: 10.1186/1472-6750-11-75.
During the development of a therapeutic antibody, large numbers of monoclonal antibodies are required to screen for those that are best suited for the desired activity. Although the single cell-based immunoglobulin variable gene cloning technique is a powerful tool, the current methods remain an obstacle to the rapid production of large numbers of recombinant antibodies.
We have developed a novel overlap extension polymerase chain reaction, the target-selective joint polymerase chain reaction (TS-jPCR), and applied it to the generation of linear immunoglobulin gene expression constructs. TS-jPCR is conducted using a PCR-amplified immunoglobulin variable gene and an immunoglobulin gene-selective cassette (Ig-cassette) that contains all essential elements for antibody expression and overlapping areas of immunoglobulin gene-specific homology. The TS-jPCR technique is simple and specific; the 3'-random nucleotide-tailed immunoglobulin variable gene fragment and the Ig-cassette are assembled into a linear immunoglobulin expression construct, even in the presence of nonspecifically amplified DNA. We also developed a robotic magnetic beads handling instrument for single cell-based cDNA synthesis to amplify immunoglobulin variable genes by rapid amplification of 5' cDNA ends PCR. Using these methods, we were able to produce recombinant monoclonal antibodies from large numbers of single plasma cells within four days.
Our system reduces the burden of antibody discovery and engineering by rapidly producing large numbers of recombinant monoclonal antibodies in a short period of time.
在治疗性抗体的开发过程中,需要大量的单克隆抗体来筛选出最适合所需活性的抗体。尽管基于单细胞的免疫球蛋白可变基因克隆技术是一种强大的工具,但目前的方法仍然是快速生产大量重组抗体的障碍。
我们开发了一种新的重叠延伸聚合酶链反应,即目标选择性联合聚合酶链反应(TS-jPCR),并将其应用于线性免疫球蛋白基因表达构建体的生成。TS-jPCR 使用 PCR 扩增的免疫球蛋白可变基因和包含抗体表达所需的所有必需元件以及免疫球蛋白基因特异性同源性重叠区域的免疫球蛋白基因选择性盒(Ig 盒)进行。TS-jPCR 技术简单且具有特异性;3'-随机核苷酸尾免疫球蛋白可变基因片段和 Ig 盒被组装成线性免疫球蛋白表达构建体,即使存在非特异性扩增的 DNA 也是如此。我们还开发了一种用于基于单细胞的 cDNA 合成的机器人磁性珠处理仪器,通过快速扩增 5' cDNA 末端 PCR 来扩增免疫球蛋白可变基因。使用这些方法,我们能够在四天内从大量单个浆细胞中生产出重组单克隆抗体。
我们的系统通过在短时间内快速生产大量重组单克隆抗体,减轻了抗体发现和工程的负担。