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Published on: September 3, 2013
Tandem-Activatable PROTAC Prodrug for Tumor Biomarker-Driven Near-Infrared Opto-Proteolysis
Xiaoyan Lu1, Xiaoning Wang1, Hanwen Liao1
1State Key Laboratory of Analytical Chemistry for Life Sciences, Jiangsu Key Laboratory of Advanced Organic Materials, School of Chemistry and Chemical Engineering, Chemistry and Biomedicine Innovation Center (ChemBIC), ChemBioMed Interdisciplinary Research Center at Nanjing University, Nanjing University, Nanjing, 210023, China.
This study introduces a tandem-activatable PROTAC prodrug (TAP) strategy for precise on-tumor protein degradation. This approach uses tumor enzyme and light activation to minimize off-tumor toxicity in cancer treatment.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Targeted protein degradation is key for cancer therapy using proteolysis-targeting chimeras (PROTACs).
- Achieving tumor-specific PROTAC activity remains a significant challenge, leading to potential off-tumor toxicity.
Purpose of the Study:
- To develop a novel tandem-activatable PROTAC prodrug (TAP) strategy for precise on-tumor proteolysis.
- To enhance cancer treatment efficacy by minimizing off-tumor side effects of PROTACs.
Main Methods:
- Constructed TAP by linking PROTAC to a tumor-homing cyclopeptide via a tandem-locking linker.
- The linker incorporated a singlet-oxygen cleavable moiety, a near-infrared photosensitizer, and a Cathepsin B-cleavable substrate.
- Activated TAP sequentially using Cathepsin B and near-infrared light for on-demand proteolysis.
Main Results:
- Demonstrated tumor-selective degradation of bromodomain-containing protein 4 (BRD4) by TAP.
- Achieved synergistic tumor suppression through combined PROTAC activity and photodynamic therapy.
- Validated the tandem-lock design for controlled proteolysis exclusively within the tumor microenvironment.
Conclusions:
- The tandem-activatable PROTAC prodrug (TAP) strategy enables spatiotemporally controlled proteolysis.
- This approach effectively minimizes off-tumor toxicity, offering a safer and more precise cancer therapeutic strategy.
- Presents the first tandem-activatable system for targeted protein degradation in vivo.

