ABSTRACT The regulation of gene expression and its connection to the dynamics of plasma membrane signaling hubs (lipid rafts) have largely remained unexplored to date. Ras signaling plays crucial roles in the initiation and progression of colon adenocarcinoma (COAD) by regulation of gene expression, including DNA methyltransferase 1 (DNMT1). Gene‐specific hypermethylation and genome‐wide hypomethylation are well characterized in various cancers, including COAD. In view of this, we have examined how the signaling pathway orchestrated by plasma membrane‐associated lipid rafts coordinates with the epigenetic modifications that precisely modulate a specific group of (hub) genes involved. First, we have identified COAD‐specific hub genes ( COL1A1, COL1A2, COL4A1, SPP1, SPARC , and THBS2 ) through extensive bioinformatics analyses, which revealed that increased expression of these hub genes facilitates the onset and progression of COAD. Comprehensive computational analyses of methylation patterns confirmed that atypical hypomethylation at these gene loci elevates their expression in COAD. Thereafter, we have explored how the dynamics of plasma membrane signaling hubs′, such as lipid rafts, influence gene‐specific promoter methylation dynamics within the nucleus of COAD cells. Our experimental analyses indicated that the transient destabilization (TD) of lipid rafts through ectopic cholesterol efflux activates the epidermal growth factor (EGF)‐independent lipid raft‐associated epidermal growth factor receptor (EGFR)‐rat sarcoma (RAS)‐mitogen‐activated protein kinase (MAPK) signaling pathway, leading to increased expression of DNMTs and decreased expression of hub genes in COAD cells. These results strongly suggest that the plasma membrane lipid raft‐associated EGFR‐RAS‐MAPK axis, functioning from membrane signaling hubs, can regulate genes located in various chromosomal locations. Ectopic expressions of DNMT1 impose an epigenetic checkpoint at those target loci by methylation of promoter DNA of the respective genes. We conclude that, gene specific hypomethylation of some genes, including COL1A1, COL1A2, COL4A1, SPP1, SPARC , and THBS2 drives COAD and would serve as potential markers for COAD screening.
Roy et al. (2026) studied this question.