DOI: 10.1073/pnas.2618249123 ISSN: 0027-8424
MicroRNA-driven regulation of immunosuppressive microenvironment in hepatocellular carcinoma
Gerard J. Nuovo, Thomas C. Heineman, Esmerina Tili, Carlo M. Croce
We investigated the role of tumor microenvironment (TME) in evolution of liver cirrhosis to hepatocellular carcinoma (HCC). Nonmalignant hepatic tissues, including chronic hepatitis and cirrhosis, retained expression of liver specific
miR-122
and hepatocyte nuclear factor 4 (HNF-4) transcription factor and exhibited an immune surveillance program characterized by Inducible T cell Costimulatory Ligand (ICOSL) and NF-κB expression, low Suppressor of Cytokine Signaling 1 (SOCS1) levels, and abundant cytotoxic T cell infiltration. In contrast, progression to HCC was associated with loss of cytotoxic T cells, loss of ICOSL, PDL1, HNF-4, SMAD7, and NF-κB expression, and marked upregulation of YAP1 oncogene. TGF-β overexpression was induced by SMAD7 loss, mediated by
miR-21
upregulation. Loss of HNF4, was associated with reduced miR-122 expression and subsequent upregulation of its target, SOCS1. Chronic inflammation, driven by
miR-155
, created an immune permissive environment that facilitated
miR-21 induction
and
miR-122 loss
. In addition,
miR-21
and
miR-155
contributed to malignant transformation through suppression of numerous tumor suppressor genes and enhanced YAP1 expression, a potent hepatocyte oncogene. These findings were recapitulated in orthotopic HCC mouse models, which demonstrated loss of ICOSL, PDL1, and HNF4 expression, minimal cytotoxic T cell infiltration, and increased of SOCS1, YAP1, and TGF-β expression. It is concluded that the transition from cirrhosis to HCC is associated by coordinated immunosuppression and oncogenic signaling driven by
miR-21
and
miR-155
, together with the loss of
miR-122
. Targeting
miR-155
may therefore represent a preventive strategy for HCC development in patients with chronic viral hepatitis.