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Regulation of ErbB2 receptor status by the proteasomal DUB POH1
Han Liu1, Richard Buus, Michael J Clague
1Physiological Laboratory, School of Biomedical Sciences, Liverpool, United Kingdom.
Abstract:
Understanding the factors, which control ErbB2 and EGF receptor (EGFR) status in cells is likely to inform future therapeutic approaches directed at these potent oncogenes. ErbB2 is resistant to stimulus-induced degradation and high levels of over-expression can inhibit EGF receptor down-regulation. We now show that for HeLa cells expressing similar numbers of EGFR and ErbB2, EGFR down-regulation is efficient and insensitive to reduction of ErbB2 levels. Deubiquitinating enzymes (DUBs) may extend protein half-lives by rescuing ubiquitinated substrates from proteasomal degradation or from ubiquitin-dependent lysosomal sorting. Using a siRNA library directed at the full complement of human DUBs, we identified POH1 (also known as Rpn11 or PSMD14), a component of the proteasome lid, as a critical DUB controlling the apparent ErbB2 levels. Moreover, the effects on ErbB2 levels can be reproduced by administration of proteasomal inhibitors such as epoxomicin used at maximally tolerated doses. However, the extent of this apparent loss and specificity for ErbB2 versus EGFR could not be accounted for by changes in transcription or degradation rate. Further investigation revealed that cell surface ErbB2 levels are only mildly affected by POH1 knock-down and that the apparent loss can at least partially be explained by the accumulation of higher molecular weight ubiquitinated forms of ErbB2 that are detectable with an extracellular but not intracellular domain directed antibody. We propose that POH1 may deubiquitinate ErbB2 and that this activity is not necessarily coupled to proteasomal degradation.
Insights
The proteasome lid component POH1 (also known as Rpn11 or PSMD14) controls ErbB2 protein levels by deubiquitination, not degradation. This finding offers new therapeutic strategies for cancers driven by ErbB2 and EGFR oncogenes.
Area of Science:
- Cellular Biology
- Molecular Oncology
- Protein Degradation
Background:
- ErbB2 and Epidermal Growth Factor Receptor (EGFR) are key oncogenes in cancer therapy.
- ErbB2 overexpression can impede EGFR downregulation, impacting cellular signaling.
- Deubiquitinating enzymes (DUBs) regulate protein stability by reversing ubiquitination.
Purpose of the Study:
- To identify DUBs controlling ErbB2 and EGFR protein levels.
- To elucidate the mechanism by which DUBs affect ErbB2 and EGFR status.
- To explore therapeutic implications for targeting these oncogenes.
Main Methods:
- Utilized a siRNA library targeting human DUBs in HeLa cells.
- Investigated the effect of POH1 knockdown on ErbB2 and EGFR levels.
- Analyzed protein degradation rates and ubiquitination status using specific antibodies.
Main Results:
- Identified POH1 (Rpn11/PSMD14) as a critical DUB influencing apparent ErbB2 levels.
- Observed that POH1 knockdown leads to accumulation of higher molecular weight ubiquitinated ErbB2.
- Found that cell surface ErbB2 levels are only mildly affected by POH1 knockdown, suggesting deubiquitination independent of degradation.
Conclusions:
- POH1 plays a role in deubiquitinating ErbB2, potentially stabilizing the protein.
- The deubiquitinating activity of POH1 on ErbB2 is not directly linked to proteasomal degradation.
- Findings suggest novel therapeutic avenues targeting DUBs to modulate ErbB2 and EGFR activity in cancer.
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