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Updated: Jun 3, 2026

Multiomics Analysis of TMEM200A as a Pan-Cancer Biomarker
Published on: September 15, 2023
Multi-omics and pan-cancer analysis revealed common molecular signatures to disclose multitargeted anticancer agents
Hriddhi Sarker1,2, Farhad Bin Farid1,3, Marguba Kamrun1,4
1Department of Computational Chemistry and Drug Design, Panacea Research Center, Rajshahi, Bangladesh.
Abstract:
Cancer is characterized as a multifactorial disease due to their complex genetic and molecular mechanisms that often converge across tissue types. Shared oncogenic pathways can help us understand these functions and discover broad-spectrum therapeutics. Earlier, most studies focused on finding specific drivers for individual cancer types. However, researchers are now more interested in identifying common molecular patterns across different cancers and developing therapies that can target multiple pathways at once. This study aimed to understand the common oncogenic pathways between breast, ovarian and colorectal (BOC) cancers and identify possible multitargeted therapeutic drug molecules. To identify the common differentially expressed genes (DEGs), we analyzed three transcriptomic datasets and found a total of 128 DEGs. The protein-protein interaction (PPI) network study reveals the top-ranked, most significant hub targets, AURKA, CDK1 and CCNB1, as drug targets. Enrichment analysis with GO and KEGG pathways, as well as regulatory network (TFs and mRNAs) analysis, revealed common pathogenetic processes among BOC cancers. The AMG-900 exhibits the highest binding affinity scores of -10.8, -9.40, and -9.7 kcal/mol with the target proteins AURKA, CCNB1, and CDK1, respectively. The stability and structural flexibility of the selected protein-ligand complexes were validated by a large-scale (500 ns) molecular dynamics and MM-GBSA analyses, and the results indicate stable interactions for AURKA and CCNB1, while CDK1 showed comparatively reduced stability. The pharmacokinetic analysis revealed favorable drug-likeness and a manageable toxicity profile typical of anticancer agents. Therefore, the findings of this study propose that AMG-900 may serve as a promising multi-targeted candidate for further investigation in multi-target therapeutic strategies within precision oncology. Furthermore, these results require additional experimental (in vivo and in vitro) and clinical validation to confirm the potentiality and efficiency of this (AMG-900) lead compound.
Insights
This study identified shared cancer pathways in breast, ovarian, and colorectal cancers, revealing AURKA, CDK1, and CCNB1 as key targets. The drug candidate AMG-900 shows promise as a multi-targeted therapy for these cancers.
Area of Science:
- Oncology
- Computational Biology
- Pharmacology
Background:
- Cancer is a complex, multifactorial disease with shared genetic and molecular underpinnings across different tissue types.
- Identifying common oncogenic pathways facilitates the development of broad-spectrum therapeutics.
- Current research trends focus on cross-cancer molecular patterns for multitargeted drug development.
Purpose of the Study:
- To elucidate common oncogenic pathways in breast, ovarian, and colorectal (BOC) cancers.
- To identify potential multitargeted therapeutic drug molecules for BOC cancers.
- To investigate the drug-likeness and stability of candidate compounds.
Main Methods:
- Analysis of three transcriptomic datasets to identify common differentially expressed genes (DEGs).
- Protein-protein interaction (PPI) network analysis to pinpoint key hub targets.
- Gene Ontology (GO) and KEGG pathway enrichment analyses for pathogenetic processes.
- Molecular docking, molecular dynamics (MD), and MM-GBSA simulations for drug-target interactions.
- Pharmacokinetic and toxicity profile assessment.
Main Results:
- Identified 128 common DEGs across BOC cancers.
- AURKA, CDK1, and CCNB1 emerged as significant hub targets from PPI network analysis.
- AMG-900 demonstrated high binding affinity to AURKA, CCNB1, and CDK1, with stable interactions observed for AURKA and CCNB1.
- Pharmacokinetic analysis indicated favorable drug-likeness and a manageable toxicity profile for AMG-900.
Conclusions:
- AMG-900 is proposed as a promising multi-targeted therapeutic candidate for BOC cancers.
- The identified targets and pathways offer insights into precision oncology strategies.
- Further in vivo, in vitro, and clinical validation is required to confirm AMG-900's efficacy.
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