Masoud Khodarahmi, Danial Amiri Manjili, Foroozan Yarahmadi, Tahere Mokhtari, Adib Dashtizadeh, Helia Rajabi Dezfooli, Khaterehsadat Monirvaghefi, Hossein Gharedaghi, Sina Dolatshahi, Zahra Hasanabadi, Farzaneh Moammer, Mahya Mobinikhaledi, Aida Yavari Kondori, Zahra Farajpour, Pardis Kondori Varnosfaderani, Zahra Hashemi, Mohammad Amin Mahdizadeh, Qumars Behfar, Siamak Sandoghchian Shotorbani, Nasibeh Sargazi Moghaddam
This study identifies LKB1 as a critical regulator of PD-L1 stability in HCC, with implications for tumor immune evasion and immunotherapy response. While Skp2 appears to influence PD-L1 stability in specific contexts, LKB1's kinase activity is essential for PD-L1 regulation.
OBJECTIVES: Hepatocellular carcinoma (HCC) is a highly aggressive malignancy with limited treatment options, particularly in advanced stages. Immune checkpoint inhibitors (ICIs) targeting PD-1, PD-L1, and CTLA-4 have shown promise in cancer immunotherapy, but response rates in HCC remain variable.
MATERIALS AND METHODS: Hep3B and HepG2 HCC cells were cultured and genetically manipulated to overexpress or deplete LKB1. Western blotting, real-time PCR, and immunofluorescence were used to assess PD-L1 expression at the protein and mRNA levels. The role of Skp2 in PD-L1 regulation was evaluated through shRNA-mediated knockdown and overexpression. Additionally, kinase-dead LKB1 mutants were expressed to determine the importance of LKB1 kinase activity in PD-L1 stability. ImageJ software and Python-based computational tools were employed for quantitative analysis of immunofluorescence and Western blot data.
RESULTS: LKB1 overexpression up-regulated PD-L1 protein levels in HCC cells, while its depletion reduced PD-L1 expression, indicating a post-translational regulatory mechanism. Although Skp2 expression remained unchanged upon LKB1 modulation, Skp2 overexpression in LKB1-deficient cells increased PD-L1 levels, suggesting a context-dependent role for Skp2 in PD-L1 stability. Furthermore, wild-type LKB1, but not the kinase-dead mutant, restored PD-L1 expression, highlighting the essential role of LKB1 kinase activity in PD-L1 regulation.
CONCLUSION: This study identifies LKB1 as a critical regulator of PD-L1 stability in HCC, with implications for tumor immune evasion and immunotherapy response. While Skp2 appears to influence PD-L1 stability in specific contexts, LKB1's kinase activity is essential for PD-L1 regulation.