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◆ European journal of medicinal chemistry2026-09-03

Design and synthesis of novel peptide-based degraders against wild type and gatekeeper mutants FGFR1 for the treatment of NSCLC.

Ziyu Tian, Luwei Fu, Xuanxuan Yan, Yizhu Chen, Wenju Yang, Yingqun Chen, Haiyan Liu, Yuepao Cai, Shijie Dai

原始摘要(英文原文)· Original abstract
Non-small cell lung cancer (NSCLC) is a leading cause of cancer-related morbidity worldwide, with fibroblast growth factor receptor 1 (FGFR1) playing a pivotal role in its pathogenesis and progression. Although FGFR1-targeted therapies, particularly tyrosine kinase inhibitors (TKIs), have shown clinical efficacy, their utility is limited by acquired resistance and off-target toxicities. Here, building on established SignalTAC principles for lysosome-directed membrane protein degradation, we investigated whether an FGFR1-binding peptide (Pep1) could be converted into an FGFR1 degrader by C-terminal conjugation of degradation signal motifs. Systematic screening identified Pep-SignalTAC 2-3, which induces rapid lysosomal degradation of wild-type FGFR1, suppresses downstream signaling, and triggers apoptosis in FGFR1-dependent cellular models. Importantly, it exhibits comparable efficacy in cells harboring the FGFR1 V561 F/M gatekeeper mutation. In vivo, a hydrogel-based sustained-release formulation of Pep-SignalTAC 2-3 achieved marked and comparable FGFR1 reduction (75% in wild-type vs. 73% in mutant) and tumor growth inhibition (59% in wild-type vs. 55% in mutant) in H1581 (wild-type FGFR1) and L6-FGFR1V561M (gatekeeper mutant) xenograft models, without overt systemic toxicity. Together, these findings demonstrate the feasibility of Pep-SignalTACs as a promising FGFR1-targeted therapeutic platform that enables effective degradation of both wild-type and mutant FGFR1 in NSCLC.
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Design and synthesis of novel peptide-based degraders against wild type and gatekeeper mutants FGFR1 for the treatment of NSCLC. — 科研速览 Science Skim