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RPRD1A drives lenvatinib resistance in hepatocellular carcinoma via the ITGA5-FAK signaling axis
Xiaomeng Yao1,2, Yunkai Lin3,4, Pingping Chen2
1Department of Hepatobiliary Medicine, Eastern Hepatobiliary Surgery Hospital, Second Military Medical University (Naval Medical University), No. 700 Moyu North Road, Jiading, Shanghai, 201800, China.
Abstract:
Hepatocellular carcinoma (HCC) constitutes a formidable global health challenge. Lenvatinib, a multi-targeted tyrosine kinase inhibitor (TKI), has gradually become a cornerstone therapeutic agent for advanced HCC; however, the emergence of drug resistance severely compromises its clinical efficacy and remains a major obstacle to improving patient outcomes. In this study, we identified key genes associated with lenvatinib resistance, among which regulator of nuclear pre-mRNA domain-containing protein 1A (RPRD1A) emerged as a prominent candidate. Functional assays demonstrated that RPRD1A overexpression significantly reduces the sensitivity of HCC to lenvatinib, whereas its knockdown restores drug responsiveness. Mechanistically, RPRD1A competes with RNA polymerase II-associated protein 2 (RPAP2) for binding to RNA polymerase II (RNA Pol II), thereby derepressing integrin subunit alpha 5 (ITGA5) transcription via a c-JUN-dependent pathway. Upregulated ITGA5 subsequently activates focal adhesion kinase (FAK) signaling, which critically drives lenvatinib resistance. Notably, combined treatment with lenvatinib and either the ITGA5 inhibitor volociximab or the FAK inhibitor defactinib effectively reversed lenvatinib resistance in preclinical models. Furthermore, clinical analyses revealed that elevated expression of RPRD1A and ITGA5 correlates with poor response to lenvatinib in HCC patients, reinforcing their potential as predictive biomarkers for therapeutic resistance. Collectively, our results demonstrate that co-targeting the RPRD1A-ITGA5-FAK signaling axis in combination with lenvatinib represents a promising strategy to improve therapeutic efficacy in HCC.
Insights
Regulator of nuclear pre-mRNA domain-containing protein 1A (RPRD1A) drives lenvatinib resistance in hepatocellular carcinoma (HCC) by upregulating ITGA5 and FAK signaling. Targeting this axis may overcome resistance and improve HCC treatment outcomes.
Area of Science:
- Hepatocellular Carcinoma (HCC) Research
- Molecular Oncology
- Drug Resistance Mechanisms
Background:
- Hepatocellular carcinoma (HCC) is a major global health concern.
- Lenvatinib is a key treatment for advanced HCC, but drug resistance limits its effectiveness.
- Identifying mechanisms of lenvatinib resistance is crucial for improving patient outcomes.
Purpose of the Study:
- To identify key genes involved in lenvatinib resistance in HCC.
- To elucidate the molecular mechanisms underlying RPRD1A-mediated lenvatinib resistance.
- To evaluate therapeutic strategies targeting the RPRD1A-ITGA5-FAK axis.
Main Methods:
- Gene expression analysis to identify resistance-associated genes.
- Functional assays (overexpression and knockdown) to assess RPRD1A's role.
- Western blotting and reporter assays to investigate molecular pathways.
- Preclinical drug combination studies.
- Clinical data analysis of patient response to lenvatinib.
Main Results:
- RPRD1A overexpression confers lenvatinib resistance, while knockdown restores sensitivity.
- RPRD1A competes with RPAP2 for RNA Pol II binding, upregulating ITGA5 transcription via c-JUN.
- Upregulated ITGA5 activates FAK signaling, driving lenvatinib resistance.
- Combined lenvatinib with ITGA5 or FAK inhibitors reversed resistance in preclinical models.
- Elevated RPRD1A and ITGA5 expression correlate with poor lenvatinib response in HCC patients.
Conclusions:
- RPRD1A is a critical driver of lenvatinib resistance in HCC.
- The RPRD1A-ITGA5-FAK signaling axis represents a novel therapeutic target.
- Combination therapy targeting this axis with lenvatinib shows promise for overcoming resistance in HCC.
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