Conditional Stabilization of the Hypoxia‐Inducible Factor HIF1α— Photoswitchable Stapled Peptides Prevent Elongin BC–Mediated Degradation

V Van Tuan Trinh (Chemistry Department Marburg University Hans‐Meerwein‐Straße 4 35043 Marburg Germany) S Sabrina Fischer L Lei Zhang H Heiko Geisler (Chemistry Department Marburg University Hans‐Meerwein‐Straße 4 35043 Marburg Germany) B Belen Pardo (Chemistry Department Marburg University Hans‐Meerwein‐Straße 4 35043 Marburg Germany) R Robert Liefke (Institute of Molecular Biology and Tumor Research (IMT) Marburg University Hans‐Meerwein‐Straße 2 35043 Marburg Germany) F Frank Abendroth O Olalla Vázquez

Abstract

Abstract Oxygen levels and its distribution are tightly regulated due to their critical impact on health. Hypoxia‐inducible factors (HIFs) are traditionally recognized as key regulators of the transcriptional response to low oxygen (hypoxia). Recent research expanded their functions, highlighting their potential as therapeutic targets. Despite these advances, there is still a need for chemical biology tools that offer precise spatiotemporal control within the HIF network and output. Here, we introduce an optochemical approach that enables significant differences in expression of HIF1α‐target genes depending on the photostationary state (PSS). Our photoswitchable stapled peptide PS B ‐BCB‐04 stabilized HIF1α under normoxic conditions by targeting EloBC ( k i   =  7.9 ± 1.3 nM) and preventing VHL‐mediated degradation. Visible light allowed reversible regulation of peptide conformation, which entailed a sevenfold difference in its EloBC‐binding capacity. In a proof‐of‐concept study, we demonstrated that inhibition of HIF1α degradation enabled isomer‐specific expression of the vascular endothelial growth factor (VEGFA) in prostate cancer cells. Our results validated the potential of photopharmacological stabilization of HIF1α and provided a new toolbox for on‐demand photocontrol over the HIF‐signaling pathway as well as VHL‐mediated degradation.

Article Details

Volume / Issue Vol. 64, Issue 36
Published September 01, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

V

Van Tuan Trinh

Chemistry Department Marburg University Hans‐Meerwein‐Straße 4 35043 Marburg Germany

S

Sabrina Fischer

L

Lei Zhang

H

Heiko Geisler

Chemistry Department Marburg University Hans‐Meerwein‐Straße 4 35043 Marburg Germany

B

Belen Pardo

Chemistry Department Marburg University Hans‐Meerwein‐Straße 4 35043 Marburg Germany

R

Robert Liefke

Institute of Molecular Biology and Tumor Research (IMT) Marburg University Hans‐Meerwein‐Straße 2 35043 Marburg Germany

F

Frank Abendroth

O

Olalla Vázquez