Identification of GOT1, OAF, XPNPEP2, CRISPLD2, and RPS21 as Sorafenib-Treatment-Associated Candidate Biomarkers for Hepatocellular Carcinoma
Mengru Zhan, Penghui Li, Wanyi Wang, Mingxing ZhaoIntroduction:
Sorafenib is a first-line therapy for hepatocellular carcinoma (HCC), but its clinical benefit is limited by significant interpatient variability in response. Identifying reliable candidate biomarkers associated with sorafenib treatment is critical for optimizing treatment strategies and improving patient outcomes.
Methods:
Samples in the GSE109211 dataset were divided into sorafenib-treated and control groups. Differentially expressed genes (DEGs) were screened using the limma package and filtered via LASSO and SVM-RFE algorithms to identify potential HCC biomarkers. CIBERSORT and ESTIMATE algorithms were used to evaluate immune infiltration and its correlation with candidate genes, followed by GSEA to explore enriched functional pathways. Regulatory networks were constructed using hTFtarget and ENCORI, and potential drugs were predicted by molecular docking. The expression and knockdown effects of RPS21 were validated in THLE-2 and HuH7 cells using qRTPCR, wound-healing, and Transwell assays.
Results:
Five sorafenib-treatment-associated candidate biomarkers were identified, including glutamic-oxaloacetic transaminase 1 (GOT1), out at first homolog (OAF), Xprolyl aminopeptidase 2 (XPNPEP2), cysteine-rich secretory protein LCCL domain-containing 2 (CRISPLD2), and ribosomal protein S21 (RPS21). These genes were related to immune cell infiltration. In particular, the expression of OAF and CRISPLD2 was associated with immune scores. GSEA showed enrichment in pathways such as OXIDATIVE_ PHOSPHORYLATION and MYC_TARGETS. GOT1 stably bound to sorafenib, carbamazepine, and diclofenac. RPS21 was upregulated in HuH7 cells, and its knockdown impaired migration and invasion, validating its oncogenic role.
Discussion:
This study identified candidate biomarkers related to sorafenib treatment for HCC through computational analyses, experimentally validated the oncogenic function of RPS21, and predicted carbamazepine and diclofenac as potential combination therapies for precision treatment of HCC.
Conclusion:
We identified HCC biomarkers associated with sorafenib treatment and the tumor immune microenvironment, predicted targeted drugs, and expanded the paradigm for precision therapy in HCC.