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Targeting oncogenic K-RAS mutants with small-molecule degrader XMU-MP-9 through NEDD4-1
Taoling Zeng1, Tingting Jiang1, Baoding Zhang1
1State Key Laboratory of Cellular Stress Biology, School of Life Sciences, Faculty of Medicine and Life Sciences, Xiamen University, Xiamen 361102, China.
Abstract:
K-RAS mutations represent a most prevalent oncogenic alteration in human cancers. Despite tremendous efforts, it remains a big challenge to develop strategies that specifically target the oncogenic K-RAS mutants. Here, taking advantage of our previous finding that NEDD4-1 is an E3 ubiquitin ligase for wild-type RAS proteins, we developed a compound XMU-MP-9 that can promote ubiquitination and degradation of various K-RAS mutants including K-RASG12V, and significantly inhibit proliferation and tumor development of K-RAS mutant harboring cells. Mechanistically, XMU-MP-9 acts as a bifunctional compound to bind the C2 domain of NEDD4-1 and an allosteric site of K-RAS to enhance NEDD4-1 and K-RAS interaction, and to induce a conformational change of NEDD4-1/K-RAS complex to allow NEDD4-1 targeting K128 of K-RAS for ubiquitination. Hence, our study presents an effective way to degrade K-RAS mutants to prevent tumor development.
Insights
A new compound, XMU-MP-9, targets and degrades cancer-driving K-RAS mutants by enhancing ubiquitination. This approach effectively inhibits tumor cell proliferation and development in K-RAS mutant cancers.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- K-RAS mutations are common drivers in human cancers.
- Targeting oncogenic K-RAS mutants remains a significant therapeutic challenge.
- NEDD4-1 is an E3 ubiquitin ligase for wild-type RAS proteins.
Purpose of the Study:
- To develop a novel strategy for targeting and degrading oncogenic K-RAS mutants.
- To identify a compound that can specifically inhibit K-RAS mutant-driven cancer progression.
Main Methods:
- Development of a bifunctional compound, XMU-MP-9.
- Investigating the compound's mechanism of action on NEDD4-1 and K-RAS interaction.
- Assessing the compound's effect on K-RAS mutant ubiquitination, degradation, and cancer cell proliferation.
Main Results:
- XMU-MP-9 promotes ubiquitination and degradation of various K-RAS mutants (e.g., K-RASG12V).
- The compound inhibits proliferation and tumor development in K-RAS mutant cancer cells.
- XMU-MP-9 binds NEDD4-1 and K-RAS, enhancing their interaction and leading to K-RAS ubiquitination at K128.
Conclusions:
- XMU-MP-9 offers a novel therapeutic strategy by degrading oncogenic K-RAS mutants.
- This approach effectively inhibits K-RAS mutant-driven tumor development.
- Targeting K-RAS degradation presents a promising avenue for cancer therapy.
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