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Published on: August 19, 2025
Conserved Phosphoprotein Networks Identify Actionable Adhesion/Wnt and Metallothionein Modules in Cholangiocarcinoma
Sirinya Sitthirak1,2, Sittiruk Roytrakul3, Arporn Wangwiwatsin4,5
1Department of Medical Technology, School of Allied Health Sciences, Walailak University, 222 Thaiburi, Thasala District, Nakhon Si Thammarat 80161, Thailand.
Abstract:
Background/Objectives: Cholangiocarcinoma (CCA) is a very aggressive biliary carcinoma characterised by significant molecular heterogeneity and restricted treatment alternatives. Despite genomic and proteomic investigations revealing recurrent changes, the signalling dynamics influencing tumour behaviour remain inadequately comprehended. Methods: We conducted high-resolution Liquid Chromatography-Tandem Mass Spectrometry (LC-MS/MS)-based phosphoproteomics on paired tumour and surrounding tissues from 13 CCA patients in Northeast Thailand, meticulously sampling four geographically unique tumour areas for each patient. Our analysis concentrated on phosphoproteins consistently identified across all regions, delineating strong tumour-specific and cohort-wide phosphorylation signatures. Results: Notwithstanding considerable inter-patient variability, two conserved signalling modules were identified: an adhesion/Wnt axis regulated by hyperphosphorylated CTNNB1 protein (β-catenin) and a metal-handling module facilitated by metallothionein-1G (MT1G) protein and metallothionein-2A (MT2A) protein. Pathway enrichment identified focal adhesion, ECM-receptor interaction, cytoskeletal modulation, and mineral absorption as critical activities. Conclusions: This study elucidates conserved oncogenic pathways by analysing phosphoproteomic signatures across regional and patient-level variability, emphasising phosphoproteomics as a robust framework for biomarker and therapeutic development in CCA.
Insights
This study reveals conserved signaling pathways in cholangiocarcinoma (CCA) by analyzing phosphoproteomics data. Key findings include an adhesion/Wnt axis and a metal-handling module, offering insights for developing new CCA biomarkers and therapies.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Cholangiocarcinoma (CCA) is an aggressive biliary cancer with limited treatment options.
- Molecular heterogeneity and signaling pathway dysregulation contribute to CCA's poor prognosis.
- Current understanding of CCA signaling dynamics remains incomplete.
Purpose of the Study:
- To investigate conserved signaling pathways in CCA using phosphoproteomics.
- To identify tumor-specific and cohort-wide phosphorylation signatures.
- To explore potential biomarkers and therapeutic targets for CCA.
Main Methods:
- High-resolution Liquid Chromatography-Tandem Mass Spectrometry (LC-MS/MS)-based phosphoproteomics.
- Analysis of paired tumor and surrounding tissues from 13 CCA patients.
- Examination of phosphoproteins across four distinct tumor regions per patient.
Main Results:
- Identified two conserved signaling modules: an adhesion/Wnt axis and a metal-handling module.
- Observed hyperphosphorylated CTNNB1 (β-catenin) regulating the adhesion/Wnt axis.
- Detected metallothionein-1G (MT1G) and metallothionein-2A (MT2A) in the metal-handling module.
- Pathway enrichment highlighted focal adhesion, ECM-receptor interaction, and mineral absorption.
Conclusions:
- Phosphoproteomic signatures reveal conserved oncogenic pathways in CCA despite variability.
- The identified signaling modules provide a robust framework for CCA biomarker discovery.
- This approach supports the development of novel therapeutic strategies for cholangiocarcinoma.
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