Light-controlled disruption of cancer cell dormancy via photoswitchable stress hormone receptor degraders
成果类型:
Article
署名作者:
Freitag, Karina M.; Scheuplein, Robin; Orlacchio, Chiara; Ansuinelli, Viola; Fava, Tommaso; Fischer, Vincent; Zhang, Bohan; Kretschmer, Miriam; Gazorpak, Mahshid; Carreira, Erick M.; Gapp, Katharina
署名单位:
Swiss Federal Institutes of Technology Domain; ETH Zurich; Swiss Federal Institutes of Technology Domain; ETH Zurich; Swiss Federal Institutes of Technology Domain; ETH Zurich; University of Zurich
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2528760123
发表日期:
2026-05-26
页码:
e2528760123
关键词:
photopharmacology
PROTAC
stress hormone signaling
cancer cell dormancy
protein-degradation
lung-cancer
isomerization
performance
摘要:
Cancer cell dormancy is a key contributor to therapy resistance and disease relapse. The glucocorticoid receptor (GR), a major mediator of stress hormone signaling, has emerged as a central regulator of dormancy in non-lymphoid solid tumors, particularly lung cancer. However, systemic GR inhibition or degradation using conventional Proteolysis Targeting Chimeras (PROTACs) risks widespread on-target toxicity due to their constitutive activity. We hypothesized that integrating photoswitchable elements into PROTACs, termed photoPROTACs, would enable wavelength-specific, spatiotemporally precise modulation of GR degradation and dormancy-associated signaling pathways. Here, we synthesized a diverse series of photoPROTACs incorporating photoswitchable arylazotriazole or arylazopyrazole scaffolds, including previously unreported (OEt)2- and (NMe2)2-substituted photoswitches. Arylazopyrazole-based GR photoPROTACs bearing Me2- and (OEt)2 substituents exhibited near-quantitative photoisomerization (95% Z-isomer; 89 to 92% E-isomer), no photobleaching, and thermal half-lives in the range of 3 to 12.2 d in dimethyl sulfoxide (DMSO). Among them, KH-5-306 and KH-5-309 induced potent, specific, and reversible GR degradation in their thermodynamically stable E-isomeric form at low nanomolar concentrations, with markedly reduced activity in the Z-isomeric state. Transcriptomic profiling showed that E-KH-5-309 disrupts GR-driven dormancy-associated gene expression programs in a non-small cell lung cancer (NSCLC) model, while the Z-isomer remains functionally inert. Our findings establish a framework for the rational design of photoswitchable PROTACs beyond GR and demonstrate their potential to achieve spatiotemporal control of stress hormone receptor signaling, enabling mechanistic insights into GR function and the targeted disruption of cancer cell dormancy.
来源URL: