表位
抗体
表皮生长因子受体
单克隆抗体
癌症研究
构象表位
化学
生物
抗原
生长抑制
受体
下调和上调
表皮生长因子
分子生物学
激酶
线性表位
癌症
西妥昔单抗
细胞培养
配体(生物化学)
靶向治疗
癌细胞
结合位点
抑制性突触后电位
细胞
体外
阻断抗体
人源化抗体
噬菌体展示
一级和二级抗体
表位定位
信号转导
细胞生长
作者
Jarrett Adams,Evan Mallette,Max London,Ryan J. Liang,Dewald van Dyk,Zvezdan Pavlovic,Isabelle Pot,C. Ronald Geyer,Heather A. Bruce,Levi L. Blazer,Craig A. Hokanson,M.D.L. Suits,A.U. Singer,Sachdev S. Sidhu
出处
期刊:Protein Science
[Wiley]
日期:2026-05-24
卷期号:35 (6): e70645-e70645
被引量:1
摘要
Therapeutic antibodies that inhibit the epidermal growth factor receptor (EGFR) are limited to a subset of EGFR-driven cancers. This is in part due to resistance mechanisms that attenuate efficacy. All approved therapeutic antibodies target the closed form of EGFR and compete with the ligand. However, tumors can be desensitized to these antibodies by upregulation of EGFR ligands or through EGFR mutations that uncouple kinase activity from ligand binding. We sought to overcome these resistance mechanisms by developing antibodies targeting alternative epitopes of EGFR. Using phage-displayed libraries, we developed two distinct antibodies, one that competed with EGF and another that did not. Crystal structures revealed that the competitive antibody bound to a site that overlapped the EGF-binding site, whereas the other antibody bound to the arm that induces receptor dimerization. Because the libraries used a common light chain, we were able to assemble a biparatopic antibody that incorporated both antigen-binding sites and thus targeted both epitopes on EGFR. We showed that the antibody that targeted the dimerization arm inhibited the growth of cancer cell lines that were resistant to the antibody that targeted the EGF-binding site. Moreover, the biparatopic antibody was more potent than the monoparatopic antibodies. Our results suggest that antibodies that target the dimerization arm of EGFR may be effective across a broader range of cancers than antibodies that target the EGF-binding site, and that a biparatopic antibody targeting both epitopes may be the most effective therapeutic for inhibiting aberrant EGFR signaling in cancer.
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