KRAS mutations, present in about 40% of colorectal cancers (CRCs), are strongly associated with an immunosuppressive tumor microenvironment characterized by restricted immune infiltration and poor responses to immunotherapy. Here, we found that KRAS mutations remodel the N6-methyladenosine (m6A) epitranscriptome to promote immune evasion. Methylated RNA immunoprecipitation sequencing revealed that KRAS-mutant cells exhibit increased m6A deposition on CD73 mRNA, enhancing its stability through IGF2BP3. TEAD4-dependent recruitment of the METTL3 methyltransferase complex induced the m6A modification, identifying TEAD4 as a spatial regulator of m6A deposition. Functionally, METTL3 knockdown in KRAS-mutant syngeneic tumors suppressed tumor growth and restored antitumor immunity by increasing CD8⁺ T-cell and NK-cell infiltration in a CD73-dependent manner. Moreover, METTL3 inhibition synergized with anti-PD-1 therapy and a CD73 inhibitor to reduce tumor burden. Together, these findings demonstrate that KRAS-driven m6A remodeling is a key mechanism of immune suppression in CRC and highlight METTL3 as a promising therapeutic target.
Seungjae Shin, Seung-Pyo Hong, Seoho Lee et al.· Cancer Research· 0 citations
A programmable gene replacement tool, named prime assembly (PA), which adapts prime editors to produce one or two pairs of 3'-flaps on both the genome and donor DNA, allowing megabase-scale genomic excision and/or kilobase-scale donor insertion at the gene of interest.
Hojun Jung, Bada Jeong, Yong-Woo Kim et al.· Nature Biotechnology· 0 citations