Silencing of oncogenic KRAS by mutant-selective small interfering RNA

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Abstract

Oncogenic mutations in the KRAS gene are well-established drivers of cancer. While the recently developed KRAS G12C inhibitors offer a targeted KRAS therapy and have shown success in the clinic, KRAS G12C represents only 11% of all KRAS mutations. Current therapeutic approaches for all other KRAS mutations are both indirect and non-mutant-selective, largely focusing on inhibition of downstream KRAS effectors such as MAP kinases. Inhibition of KRAS downstream signaling results in a system-wide down-modulation of the respective targets, raising concerns about systemic cell toxicity. Here, we describe a custom short interfering RNA (siRNA) oligonucleotide (EFTX-D1) designed to preferentially bind mRNA of the most commonly occurring KRAS missense mutations in codons 12 and 13. We determined that EFTX-D1 preferentially reduced the mutant KRAS sequence versus wild-type at the levels of both transcription and translation, and reversed oncogenic KRAS-induced morphologic and growth transformation. Furthermore, EFTX-D1 significantly impaired the proliferation of several KRAS mutant cancer cell lines in 2-D as well as 3-D assays. Taken together, our data indicate a novel use of RNA interference (RNAi) to target oncogenic KRAS-driven cancers specifically.

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last seen: 2026-05-19T01:45:01.086888+00:00