Gel-based chemical cross-linking analysis of 20S proteasome subunit-subunit interactions in breast cancer
Abstract:
The ubiquitin-proteasome system plays a pivotal role in breast tumorigenesis by controlling transcription factors, thus promoting cell cycle growth, and degradation of tumor suppressor proteins. However, breast cancer patients have failed to benefit from proteasome inhibitor treatment partially due to proteasome heterogeneity, which is poorly understood in malignant breast neoplasm. Chemical crosslinking is an increasingly important tool for mapping protein three-dimensional structures and proteinprotein interactions. In the present study, two cross-linkers, bis (sulfosuccinimidyl) suberate (BS(3)) and its water-insoluble analog disuccinimidyl suberate (DSS), were used to map the subunit-subunit interactions in 20S proteasome core particle (CP) from MDA-MB-231 cells. Different types of gel electrophoresis technologies were used. In combination with chemical cross-linking and mass spectrometry, we applied these gel electrophoresis technologies to the study of the noncovalent interactions among 20S proteasome subunits. Firstly, the CP subunit isoforms were profiled. Subsequently, using native/SDSPAGE, it was observed that 0.5 mmol/L BS(3) was a relatively optimal cross-linking concentration for CP subunit-subunit interaction study. 2-DE analysis of the cross-linked CP revealed that α1 might preinteract with α2, and α3 might pre-interact with α4. Moreover, there were different subtypes of α1α2 and α3α4 due to proteasome heterogeneity. There was no significant difference in cross-linking pattern for CP subunits between BS(3) and DSS. Taken together, the gel-based characterization in combination with chemical cross-linking could serve as a tool for the study of subunit interactions within a multi-subunit protein complex. The heterogeneity of 20S proteasome subunit observed in breast cancer cells may provide some key information for proteasome inhibition strategy.
Insights
This study used chemical crosslinking and gel electrophoresis to investigate 20S proteasome subunit interactions in breast cancer cells, revealing heterogeneity that may impact proteasome inhibitor efficacy.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- The ubiquitin-proteasome system is crucial in breast cancer, regulating cell cycle and tumor suppressors.
- Proteasome heterogeneity limits the effectiveness of proteasome inhibitor treatments in breast cancer patients.
- Understanding proteasome subunit interactions is key to developing targeted therapies.
Purpose of the Study:
- To map subunit-subunit interactions within the 20S proteasome core particle (CP) from MDA-MB-231 breast cancer cells.
- To investigate the role of proteasome heterogeneity in breast cancer.
- To evaluate chemical crosslinking combined with gel electrophoresis as a method for studying protein complex interactions.
Main Methods:
- Utilized chemical crosslinkers bis(sulfosuccinimidyl) suberate (BS(3)) and disuccinimidyl suberate (DSS).
- Employed various gel electrophoresis techniques, including native/SDS-PAGE and 2-DE analysis.
- Combined chemical crosslinking with mass spectrometry for subunit interaction analysis.
Main Results:
- Identified potential pre-interactions between specific 20S proteasome subunits (α1 with α2, and α3 with α4).
- Observed distinct subtypes of these interactions, indicating proteasome heterogeneity in breast cancer cells.
- Determined BS(3) at 0.5 mmol/L as an optimal crosslinking concentration for CP subunit studies.
- Found no significant difference in crosslinking patterns between BS(3) and DSS.
Conclusions:
- Gel-based characterization coupled with chemical crosslinking is effective for studying subunit interactions in multi-subunit protein complexes.
- The identified heterogeneity in 20S proteasome subunits from breast cancer cells offers insights for improving proteasome inhibition strategies.
- Further research into proteasome heterogeneity could lead to more effective breast cancer treatments.
More Related Videos
10:01Combining Chemical Cross-linking and Mass Spectrometry of Intact Protein Complexes to Study the Architecture of Multi-subunit Protein Assemblies
Published on: November 28, 2017
11:33Monitoring the Assembly of a Secreted Bacterial Virulence Factor Using Site-specific Crosslinking
Published on: December 17, 2013
