STAT3 is a transcription factor that plays central roles in various physiological processes and its deregulation results in serious diseases including cancer. The mechanisms on howSTAT3 activity is regulated remains enigmatic. Here we identifyTRIM27 as a positive regulator of II-6-inducedSTAT3activation and downstream gene expression.TRIM27 localizes toretromer-positive punctatestructures and serves as a critical link for recruiting gp130, JAK1, andSTAT3 to and subsequent phosphorylation ofSTAT3 at theretromer-positivestructures. Overexpression ofTRIM27promotes cancer cell growth in vitro and tumor growth in nude mice, whereas knockdown ofTRIM27 has opposite effects. Deficiency ofTRIM27significantly impairs dextran sulfate sodium (DSS)-inducedSTAT3activation, inflammatory cytokine expression andcolitis as well as azoxymethane (AOM)/DSS-inducedcolitis-associated cancer in mice. These findings reveal a retromer-dependent mechanism for regulation ofSTAT3activation, inflammation, and inflammation-associated cancer development.
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