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The Rat sarcoma viral oncogene homolog (RAS) proteins are a family of small GTPases, including the KRAS, HRAS, and NRAS isoforms, that function as critical binary molecular switches in cellular signaling pathways (Source: UniProt P01116, P01112). They cycle between an inactive GDP-bound state and an active GTP-bound state to regulate downstream effectors like RAF-MEK-ERK and PI3K-AKT, which control cell growth, differentiation, and survival (Source: NIH/NCI). Mutations in RAS genes are among the most frequent drivers of human cancer, occurring in approximately 30% of all tumors, with particularly high prevalence in pancreatic, colorectal, and lung cancers (Source: PubMed PMC4355019). Historically considered "undruggable" due to their high affinity for GTP and lack of traditional small-molecule binding pockets, recent therapeutic advances have successfully targeted specific mutant forms (Source: StatPearls). For example, covalent inhibitors such as sotorasib and adagrasib have been developed to bind the switch II pocket of the KRAS G12C mutant, locking it in the inactive state (Source: PubChem). Despite these successes, therapeutic challenges remain, including the development of acquired resistance through secondary mutations and the need for effective inhibitors against other common variants like G12D and G12V (Source: PubMed PMC8353830).
Covalent inhibition of the switch II pocket in the inactive GDP-bound state; inhibition of farnesyltransferase to prevent membrane localization; inhibition of downstream effector interactions.
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