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Updated: Aug 13, 2025

Fully Processed Recombinant KRAS4b: Isolating and Characterizing the Farnesylated and Methylated Protein
Published on: January 16, 2020
Annual review of KRAS inhibitors in 2022
Hao Wang1, Lingling Chi1, Fuqiang Yu1
1School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou, 450001, China; Collaborative Innovation Center of New Drug Research and Safety Evaluation of Henan Province, Zhengzhou, 450001, China.
Abstract:
Kirsten rat sarcoma viral (KRAS) oncogene is the most commonly mutated isoform of RAS, accounting for 85% of RAS-driven human cancers. KRAS functioning as a signaling hub participates in multiple cellular signaling pathways and regulates a variety of critical processes such as cell proliferation, differentiation, growth, metabolism and migration. Over the past decades, KRAS oncoprotein has been considered as an "undruggable" target due to its smooth surface and high GTP/GDP affinity. The breakthrough in directly targeting G12C mutated-KRAS and recently approved covalent KRASG12C inhibitors sotorasib and adagrasib broke the myth of KRAS undruggable and confirmed the directly targeting KRAS as one of the most promising strategies for the treatment of cancers. Targeting KRASG12C successfully enriched the understanding of KRAS and brought opportunities for the development of inhibitors to directly target other KRAS mutations. With the stage now set for a new era in the treatment of KRAS-driven cancers, the development of KRAS inhibitors also enters a booming epoch. In this review, we overviewed the research progress of KRAS inhibitors with the potential to treat cancers covering articles published in 2022. The design strategies, discovery processes, structure-activity relationship (SAR) studies, cocrystal structure analysis as well as in vitro and in vivo activity were highlighted with the aim of providing updated sight to accelerate the further development of more potent inhibitors targeting various mutated-KRAS with favorable drug-like properties.
Insights
Directly targeting KRAS mutations, once considered undruggable, has revolutionized cancer treatment. Recent KRAS inhibitors offer new hope for treating various KRAS-driven cancers.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Kirsten rat sarcoma viral (KRAS) oncogene mutations drive 85% of RAS-driven cancers.
- KRAS is a critical signaling hub regulating cell proliferation, differentiation, and migration.
- KRAS was historically considered undruggable due to its smooth surface and high affinity.
Purpose of the Study:
- To review research progress on KRAS inhibitors for cancer treatment published in 2022.
- To highlight design strategies, discovery processes, and SAR studies for KRAS inhibitors.
- To provide an updated perspective on developing potent inhibitors for various KRAS mutations.
Main Methods:
- Literature review of articles published in 2022 focusing on KRAS inhibitors.
- Analysis of design strategies, discovery processes, and structure-activity relationships (SAR).
- Inclusion of cocrystal structure analysis and in vitro/in vivo activity data.
Main Results:
- The development of covalent KRASG12C inhibitors (sotorasib, adagrasib) has validated direct KRAS targeting.
- Targeting KRASG12C has advanced understanding and spurred development for other KRAS mutations.
- Research in 2022 shows a booming epoch in KRAS inhibitor development.
Conclusions:
- Directly targeting KRAS mutations represents a promising strategy for cancer therapy.
- Further development of KRAS inhibitors is crucial for treating a wider range of KRAS-driven cancers.
- Optimizing inhibitors for potency and favorable drug-like properties is key for clinical success.
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