Construction of Human Naïve Fab Library and Characterization of Anti-Met Fab Fragment Generated From the Library

分子生物学 肝细胞生长因子 免疫球蛋白Fab片段 抗体 生物 抗原 单克隆抗体 癌症研究 化学 受体 免疫学 生物化学 互补决定区
作者
Yongjun Jiao,Ping Zhao,Jin Zhu,Tessa Grabinski,Zhengqing Feng,Xiaohong Guan,R. Scot Skinner,Milton D. Gross,Rick V. Hay,Hiroshi Tachibana,Brian Cao
出处
期刊:Molecular Biotechnology [Springer Science+Business Media]
卷期号:31 (1): 041-054 被引量:29
标识
DOI:10.1385/mb:31:1:041
摘要

Inappropriate expression of the receptor tyrosine kinase Met and its ligand hepatocyte growth factor (HGF)/scatter factor (SF) is usually associated with an aggressive solid tumor phenotype (angiogenesis, invasiveness, and metastasis) and poor clinical prognosis. We report here the design and construction of a large, human naïve antigen-binding fragment (Fab) phage-display library with a diversity of 2.0×109, which allows rapid isolation of antigen-specific human antibody fragments. A Fab fragment specifically against Met (designated hFab-Met-1) was successively selected from this library by using biopanning on Met-transfected cell line S114. The specificity of hFab-Met-1 was characterized by immunoprecipitation, Western blotting, and flow cytometry. The results demonstrate that hFab-Met-1 reacts with the extracellular domain of Met in its native conformation. Moreover, functional analysis by Madine-Darby canine kidney cell scattering and urokinase-type plasminogen activator assays demonstrated that hFab-Met-1 is not an agonist to HGF/Met signaling compared with a murine intact monoclonal antibody (MAb) Met5. To confirm that hFab-Met-1 interacts with Met-expressing tumors in vivo, I-125-labeled hFab-Met-1 was nuclear-imaged in a mouse xenograft of Met- and HGF/SF-expressing human leiomyosarcoma. Total body scintigrams were obtained between 1 and 48 h postinjection (PI). Tumor-associated activity was imaged as early as 1 h PI, and remained visible in some animals as late as 24 h PI. As expected, activity was highest in the kidneys in early images, whereas thyroid activity became predominant in later images. In conclusion, hFab-Met-1 interacts with Met both in vitro and in vivo, and is a promising candidate for clinical diagnosis and therapeutics.
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