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Updated: Jun 22, 2025

Fully Processed Recombinant KRAS4b: Isolating and Characterizing the Farnesylated and Methylated Protein
Published on: January 16, 2020
A pan-KRAS degrader for the treatment of KRAS-mutant cancers
Jie Yang1, Qiao-Li Wang1, Guan-Nan Wang1
1State Key Laboratory of Oncology in South China, Guangdong Provincial Clinical Research Center for Cancer, Sun Yat-sen University Cancer Center, Guangzhou, Guangdong, China.
Abstract:
KRAS mutations are highly prevalent in a wide range of lethal cancers, and these mutant forms of KRAS play a crucial role in driving cancer progression and conferring resistance to treatment. While there have been advancements in the development of small molecules to target specific KRAS mutants, the presence of undruggable mutants and the emergence of secondary mutations continue to pose challenges in the clinical treatment of KRAS-mutant cancers. In this study, we developed a novel molecular tool called tumor-targeting KRAS degrader (TKD) that effectively targets a wide range of KRAS mutants. TKD is composed of a KRAS-binding nanobody, a cell-penetrating peptide selectively targeting cancer cells, and a lysosome-binding motif. Our data revealed that TKD selectively binds to KRAS in cancer cells and effectively induces KRAS degradation via a lysosome-dependent process. Functionally, TKD suppresses tumor growth with no obvious side effects and enhances the antitumor effects of PD-1 antibody and cetuximab. This study not only provides a strategy for developing drugs targeting "undruggable" proteins but also reveals that TKD is a promising therapeutic for treating KRAS-mutant cancers.
Insights
A novel tumor-targeting KRAS degrader (TKD) effectively degrades various KRAS mutants in cancer cells. This approach shows promise for treating KRAS-mutant cancers and enhancing existing therapies.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- KRAS mutations drive numerous lethal cancers and treatment resistance.
- Targeting KRAS mutants faces challenges from undruggable forms and secondary mutations.
Purpose of the Study:
- To develop a novel molecular tool, tumor-targeting KRAS degrader (TKD), for broad KRAS mutant targeting.
- To evaluate TKD's efficacy in degrading KRAS and suppressing tumor growth.
Main Methods:
- TKD construction: KRAS-binding nanobody, cancer-selective cell-penetrating peptide, lysosome-binding motif.
- Assessment of TKD's selective binding to KRAS in cancer cells.
- Evaluation of TKD-induced KRAS degradation via lysosome-dependent pathways.
Main Results:
- TKD selectively binds KRAS in cancer cells and induces degradation through lysosomes.
- TKD suppresses tumor growth with minimal side effects.
- TKD enhances the efficacy of PD-1 antibody and cetuximab treatments.
Conclusions:
- TKD offers a novel strategy for targeting previously undruggable proteins like KRAS mutants.
- TKD demonstrates significant therapeutic potential for KRAS-mutant cancers.
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