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Multi-Omics Integrative Analysis Uncovers Molecular Subtypes and mRNAs as Therapeutic Targets for Liver Cancer
1Department of Cardiovascular Medicine, The Third Affiliated Hospital of Chongqing Medical University, Chongqing, China.
Abstract:
Objective: This study aimed to systematically analyze molecular subtypes and therapeutic targets of liver cancer using integrated multi-omics analysis. Methods: DNA copy number variations (CNVs), simple nucleotide variations (SNVs), methylation, transcriptome as well as corresponding clinical information for liver carcinoma were retrieved from The Cancer Genome Atlas (TCGA). Multi-omics analysis was performed to identify molecular subtypes of liver cancer via integrating CNV, methylation as well as transcriptome data. Immune scores of two molecular subtypes were estimated using tumor immune estimation resource (TIMER) tool. Key mRNAs were screened and prognosis analysis was performed, which were validated using RT-qPCR. Furthermore, mutation spectra were analyzed in the different subtypes. Results: Two molecular subtypes (iC1 and iC2) were conducted for liver cancer. Compared with the iC2 subtype, the iC1 subtype had a worse prognosis and a higher immune score. Two key mRNAs (ANXA2 and CHAF1B) were significantly related to liver cancer patients' prognosis, which were both up-regulated in liver cancer tissues in comparison to normal tissues. Seventeen genes with p < 0.01 differed significantly for SNV loci between iC1 and iC2 subtypes. Conclusion: Our integrated multi-omics analyses provided new insights into the molecular subtypes of liver cancer, helping to identify novel mRNAs as therapeutic targets and uncover the mechanisms of liver cancer.
Insights
This study identified two liver cancer subtypes (iC1 and iC2) using multi-omics analysis. The iC1 subtype shows a worse prognosis and higher immune score, with ANXA2 and CHAF1B identified as potential therapeutic targets.
Area of Science:
- Oncology
- Genomics
- Bioinformatics
Background:
- Liver cancer is a major global health concern with diverse molecular characteristics.
- Understanding molecular heterogeneity is crucial for developing effective therapeutic strategies.
Purpose of the Study:
- To systematically analyze liver cancer molecular subtypes and therapeutic targets using integrated multi-omics data.
- To identify novel biomarkers for prognosis and potential therapeutic intervention.
Main Methods:
- Retrieved multi-omics data (CNVs, SNVs, methylation, transcriptome) and clinical information from The Cancer Genome Atlas (TCGA).
- Performed integrated multi-omics analysis to define molecular subtypes.
- Utilized TIMER tool for immune score estimation and RT-qPCR for validation of key messenger RNAs (mRNAs).
Main Results:
- Identified two distinct molecular subtypes of liver cancer: iC1 and iC2.
- The iC1 subtype exhibited a poorer prognosis and a higher immune score compared to the iC2 subtype.
- Discovered two key mRNAs, ANXA2 and CHAF1B, significantly associated with prognosis and upregulated in liver cancer tissues.
Conclusions:
- Integrated multi-omics analysis provides novel insights into liver cancer molecular subtypes.
- Identified ANXA2 and CHAF1B as potential therapeutic targets for liver cancer.
- Uncovered molecular mechanisms underlying liver cancer progression and immune evasion.
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