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Published on: March 21, 2018
Targeted sequencing reveals the mutational landscape responsible for sorafenib therapy in advanced hepatocellular
Jing Tang1,2, Cheng-Jun Sui3, Dong-Fang Wang4
1Cancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, China.
Abstract:
Rationale: The existence of primary and acquired drug resistance is the main obstacle for the effect of multi-kinase inhibitor sorafenib and regorafenib in advanced hepatocellular carcinoma (HCC). However, plenty of patients did not significantly benefit from sorafenib treatment and little is known about the mechanism of drug resistance. Methods: Laser capture microdissection was used to acquire matched normal liver and tumor tissues on formalin-fixed paraffin-embedded specimens collected before sorafenib therapy from the first surgery of 119 HCC patients. Ultra-deep sequencing (~1000×) targeting whole exons of 440 genes in microdissected specimens and siRNA screen in 7 cell lines were performed to find mutations associated with differential responses to sorafenib. Patient-derived xenograft models were employed to determine the role of TP53 in response to sorafenib. Lentiviruses harboring wild-type and c.G52C-mutant OCT4 were applied to explore the function of OCT4 in resistance to sorafenib. ChIP-PCR assay for analysis of OCT4 transcriptional activity was performed to explore the affinity with the KITLG promoter. Statistical analyses were used to associate levels of p53 and OCT4 with tumor features and patient outcomes. Results: Total 1,050 somatic mutations and 26 significant driver genes were identified. SiRNA screening in 7 HCC cell lines was further performed to identify mutations associated with differential responses to sorafenib. A recurrent nonsynonymous mutation c.G52C in OCT4 (OCT4mut) was strongly associated with good response to sorafenib, whereas the stop-gain mutation in TP53 showed the opposite outcome both in vitro and in vivo. OCT4wt-induced stem cell factor (encoded by KITLG gene, SCF) expression and cross-activation of c-KIT/FLT3-BRAF signals were identified indispensably for sorafenib resistance, which could be reversed by the combination of c-KIT tyrosine kinase inhibitors or neutralizing antibody against SCF. Mechanistically, an OCT4 binding site in upstream of KITLG promoter was identified with a higher affinity to wildtype of OCT4 rather than G52C-mutant form, which is indispensable for OCT4-induced expression of KITLG and sorafenib resistance. Conclusion: Our study reported a novel somatic mutation in OCT4 (c.G52C) responsible for the sorafenib effect, and also shed new light on the treatment of HCC through the combination of specific tyrosine kinase inhibitors according to individual genetic patterns.
Insights
A novel mutation in OCT4 (c.G52C) predicts good response to sorafenib in advanced hepatocellular carcinoma (HCC). This finding offers new therapeutic strategies combining targeted therapies based on individual genetic profiles for improved HCC treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Drug resistance to sorafenib and regorafenib is a major challenge in advanced hepatocellular carcinoma (HCC).
- Mechanisms underlying differential patient responses to sorafenib remain largely unknown.
Purpose of the Study:
- To identify genetic mutations associated with sorafenib response and resistance in HCC.
- To elucidate the role of OCT4 and TP53 mutations in HCC treatment outcomes.
Main Methods:
- Ultra-deep sequencing of 440 genes in 119 HCC patients' tumor and normal tissues.
- siRNA screening in HCC cell lines and validation in patient-derived xenograft models.
- Analysis of OCT4 binding to the KITLG promoter and its functional consequences.
Main Results:
- A recurrent OCT4 c.G52C mutation (OCT4mut) correlated with a good response to sorafenib.
- TP53 mutations were associated with poor sorafenib response.
- Wild-type OCT4 induced stem cell factor (SCF) expression, promoting sorafenib resistance via c-KIT/FLT3-BRAF signaling.
Conclusions:
- The somatic OCT4 c.G52C mutation is a novel predictor of sorafenib efficacy in HCC.
- Targeted therapies, including c-KIT inhibitors or SCF-neutralizing antibodies, can overcome sorafenib resistance.
- Personalized HCC treatment strategies can be developed based on individual genetic profiles.
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