抗体
蛋白激酶结构域
癌症研究
融合蛋白
成纤维细胞生长因子受体
生物
表位
融合基因
激酶
受体
成纤维细胞生长因子
基因
免疫学
生物化学
重组DNA
突变体
作者
Saireudee Chaturantabut,Sydney Oliver,Dennie T. Frederick,Jiwan Kim,Foxy P. Robinson,Alessandro Sinopoli,Tianyu Song,Diego J. Rodriguez,Liang Chang,Devishi Kesar,Yao He,Meilani Ching,Ruvimbo Dzvurumi,Adel Atari,Yuen‐Yi Tseng,Nabeel Bardeesy,William R. Sellers
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2024-09-18
标识
DOI:10.1101/2024.09.16.613045
摘要
Abstract Translocations involving FGFR2 gene fusions are common in cholangiocarcinoma and predict response to FGFR kinase inhibitors. However, the rate and durability of response are limited due to the emergence of resistance, typically involving acquired FGFR2 kinase domain mutations, and to sub-optimal dosing, relating to drug adverse effects. Here, we report the development of biparatopic antibodies targeting the FGFR2 extracellular domain (ECD), as candidate therapeutics. Biparatopic antibodies can overcome drawbacks of standard bivalent monoparatopic antibodies, which often show poor inhibitory or even agonist activity against oncogenic receptors. We show that oncogenic transformation by FGFR2 fusions requires an intact ECD. Moreover, by systematically generating biparatopic antibodies that target distinct epitope pairs along the FGFR2 ECD, we identified antibodies that effectively block signaling and malignant growth driven by FGFR2-fusions. Importantly, these antibodies demonstrate efficacy in vivo, synergy with FGFR inhibitors, and activity against FGFR2 fusions harboring kinase domain mutations. Thus, biparatopic antibodies may serve as new treatment options for patients with FGFR2-altered cholangiocarcinoma. Summary We identify biparatopic FGFR2 antibodies that are effective against FGFR2 fusion driven cholangiocarcinoma.
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