Related Experiment Video
Updated: May 4, 2026

Resolving Affinity Purified Protein Complexes by Blue Native PAGE and Protein Correlation Profiling
Published on: April 1, 2017
Quantitative proteomic dissection of a native 14-3-3ε interacting protein complex associated with hepatocellular
Chen Bai1, Siwei Tang, Chen Bai
1Tourism and Food College, Shanghai Business School, Shanghai, 200235, China.
Abstract:
The 14-3-3 proteins regulate diverse biological processes that are implicated in cancer development, and seven 14-3-3 isoforms were identified with isoform-specific roles in different human tumors. In our previous work, we dissected the interactome of 14-3-3ε formed during the DNA damage response in a hepatocellular carcinoma (HCC) cell using an AACT/SILAC-based quantitative proteomic approach. In this study, we used a similar proteomic approach to profile/identify the 14-3-3ε interactome formed in native HCC cells. Functional categorization and data-dependent network analysis of the native HCC-specific 14-3-3ε interactome revealed that 14-3-3ε is involved in the regulation of multiple biological processes (BPs)/pathways, including cell cycle control, apoptosis, signal transduction, transport, cell adhesion, carbohydrate metabolism, and nucleic acid metabolism. Biological validation further supports that 14-3-3ε, via association with multiple BP/pathway-specific proteins, coordinates the regulation of proliferation, survival, and metastasis of HCC. The findings in this study, together with those of our previous study, provide an extensive profile of the 14-3-3ε interaction network in HCC cells, which should be valuable for understanding the pathology of HCC and HCC therapy.
Insights
This study identifies the native 14-3-3ε interactome in hepatocellular carcinoma (HCC) cells, revealing its role in regulating proliferation, survival, and metastasis. This provides a comprehensive view of 14-3-3ε networks for HCC therapy.
Area of Science:
- Molecular Biology
- Cancer Research
- Proteomics
Background:
- 14-3-3 proteins are crucial regulators of biological processes implicated in cancer.
- Seven 14-3-3 isoforms exhibit specific roles in various human tumors.
- Previous work characterized the 14-3-3ε interactome during DNA damage response in HCC cells.
Purpose of the Study:
- To profile and identify the 14-3-3ε interactome in native hepatocellular carcinoma (HCC) cells.
- To understand the regulatory functions of 14-3-3ε in HCC.
- To provide a comprehensive profile of the 14-3-3ε interaction network in HCC.
Main Methods:
- Quantitative proteomic approach using AACT/SILAC.
- Functional categorization and data-dependent network analysis.
- Biological validation of protein associations.
Main Results:
- Identified the native HCC-specific 14-3-3ε interactome.
- 14-3-3ε regulates multiple biological processes including cell cycle, apoptosis, signal transduction, and metabolism.
- 14-3-3ε coordinates HCC proliferation, survival, and metastasis through protein associations.
Conclusions:
- The 14-3-3ε interactome in native HCC cells is extensively profiled.
- 14-3-3ε plays a significant role in regulating key HCC pathologies.
- Findings contribute to understanding HCC pathology and developing therapeutic strategies.

