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Updated: Dec 26, 2025

Evaluation of Substrate Ubiquitylation by E3 Ubiquitin-ligase in Mammalian Cell Lysates
Published on: May 10, 2022
YWHAE/14-3-3ε expression impacts the protein load, contributing to proteasome inhibitor sensitivity in multiple
Yan Xu1,2, Mariateresa Fulciniti1, Mehmet K Samur1
1Jerome Lipper Multiple Myeloma Disease Center, Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA.
Abstract:
High protein load is a feature of multiple myeloma (MM), making the disease exquisitely sensitive to proteasome inhibitor (PIs). Despite the success of PIs in improving patient outcome, the majority of patients develop resistance leading to progressive disease; thus, the need to investigate the mechanisms driving the drug sensitivity vs resistance. With the well-recognized chaperone function of 14-3-3 proteins, we evaluated their role in affecting proteasome activity and sensitivity to PIs by correlating expression of individual 14-3-3 gene and their sensitivity to PIs (bortezomib and carfilzomib) across a large panel of MM cell lines. We observed a significant positive correlation between 14-3-3ε expression and PI response in addition to a role for 14-3-3ε in promoting translation initiation and protein synthesis in MM cells through binding and inhibition of the TSC1/TSC2 complex, as well as directly interacting with and promoting phosphorylation of mTORC1. 14-3-3ε depletion caused up to a 50% reduction in protein synthesis, including a decrease in the intracellular abundance and secretion of the light chains in MM cells, whereas 14-3-3ε overexpression or addback in knockout cells resulted in a marked upregulation of protein synthesis and protein load. Importantly, the correlation among 14-3-3ε expression, PI sensitivity, and protein load was observed in primary MM cells from 2 independent data sets, and its lower expression was associated with poor outcome in patients with MM receiving a bortezomib-based therapy. Altogether, these observations suggest that 14-3-3ε is a predictor of clinical outcome and may serve as a potential target to modulate PI sensitivity in MM.
Insights
14-3-3ε protein promotes protein synthesis in multiple myeloma (MM) cells, influencing sensitivity to proteasome inhibitors (PIs). Lower 14-3-3ε expression predicts poor outcomes in patients treated with PIs.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Multiple myeloma (MM) is characterized by high protein production, conferring sensitivity to proteasome inhibitors (PIs).
- Drug resistance to PIs is a major challenge in MM treatment, necessitating research into underlying mechanisms.
- 14-3-3 proteins are known chaperones, suggesting a potential role in regulating protein homeostasis and drug response.
Purpose of the Study:
- To investigate the role of 14-3-3ε in modulating proteasome activity and sensitivity to PIs in multiple myeloma.
- To correlate 14-3-3ε expression with PI response and protein load in MM cell lines and patient samples.
Main Methods:
- Correlative analysis of 14-3-3 gene expression and PI sensitivity (bortezomib, carfilzomib) in a large panel of MM cell lines.
- Assessment of 14-3-3ε's function in protein synthesis regulation via TSC1/TSC2 complex and mTORC1 pathways.
- Evaluation of 14-3-3ε expression in primary MM cells and its association with patient outcomes.
Main Results:
- A significant positive correlation was found between 14-3-3ε expression and PI sensitivity across MM cell lines.
- 14-3-3ε promotes protein synthesis by inhibiting TSC1/TSC2 and activating mTORC1; its depletion reduced protein synthesis by 50%.
- Lower 14-3-3ε expression in primary MM cells correlated with poor outcomes in patients receiving bortezomib-based therapy.
Conclusions:
- 14-3-3ε expression is a significant predictor of PI sensitivity and clinical outcome in multiple myeloma.
- Targeting 14-3-3ε may represent a novel therapeutic strategy to enhance PI efficacy in MM patients.
- Understanding the role of 14-3-3ε in protein synthesis is crucial for developing new MM treatments.
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