Mutant EGFR is a preferred SMURF2 substrate of ubiquitination: role in enhanced receptor stability and TKI sensitivity
Ray, P.; Raghunathan, K.; Ahsan, A.; Allam, U. S.; Shukla, S.; Basrur, V.; Veatch, S.; Lawrence, T. S.; Nyati, M. K.; Ray, D.
Show abstract
We previously reported that differential protein degradation of TKI-sensitive [L858R, del(E746-A750)] and resistant (T790M) epidermal growth factor receptor (EGFR) mutants upon erlotinib treatment correlates with drug sensitivity. However, the molecular mechanism remains unclear. We also reported SMAD ubiquitination regulatory factor 2 (SMURF2) ligase activity is important in stabilizing EGFR. Here, using in vitro and in vivo ubiquitination assays, mass spectrometry, and super-resolution microscopy, we show SMURF2-EGFR functional interaction is critical in receptor stability and TKI sensitivity. We found that L858R/T790M EGFR is a preferred substrate of SMURF2-UBCH5 (an E3-E2) complex-mediated K63-linked polyubiquitination, which preferentially stabilizes mutant receptor. We identified four lysine (K) residues (K721, 846, 1037 and 1164) as the sites of ubiquitination and replacement of K to acetylation-mimicking asparagine (Q) at K1037 position in L858R/T790M background converts the stable protein sensitive to erlotinib-induced degradation. Using STochastic Optical Reconstruction Microscopy (STORM) imaging, we show that SMURF2 presence allows longer membrane retention of activated EGFR upon EGF treatment, whereas, siRNA-mediated SMURF2 knockdown fastens receptor endocytosis and lysosome enrichment. In an erlotinib-sensitive PC9 cells, SMURF2 overexpression increased EGFR levels with improved erlotinib tolerance, whereas, SMURF2 knockdown decreased EGFR steady state levels in NCI-H1975 and PC9-AR cells to overcome erlotinib and AZD-9291 resistance respectively. Additionally, by genetically altering the SMURF2-UBCH5 complex formation destabilized EGFR. Together, we propose that SMURF2-mediated preferential polyubiquitination of L858R/T790M EGFR may be competing with acetylation-mediated receptor internalization to provide enhanced receptor stability and that disruption of the E3-E2 complex may be an attractive alternate to overcome TKI resistance.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Activity of EGFR transmembrane region variants indicates specific transmembrane dimers are not required for EGFR activity 96%
- Single-residue mutation in protein kinase C toggles between cancer and neurodegeneration 93%
- A pyro-phosphodegron controls MYC polyubiquitination to regulate cell survival 93%
Similar papers in this journal
- Regulation of the MDM2-p53 Nexus by a Nuclear Phosphoinositide and Small Heat Shock Protein Complex 95%
- Ligand-independent EGFR oligomers do not rely on the active state asymmetric kinase dimer 94%
- Targeting the Protein-Protein Interaction Between the CDC37 Co-Chaperone and Client Kinases by an Allosteric RAF Dimer Breaker 94%
Similar papers in this journal
Similar papers in this journal
- ELP-dependent expression of MCL1 promotes resistance to EGFR inhibition in triple-negative breast cancer cells 95%
- The MRAP2 accessory protein directly interacts with melanocortin-3 receptor to enhance signaling 94%
- Specificity and promiscuity of JAK recruitment regulates pleiotropy of cytokine-receptor signaling 93%
Similar papers in this journal
- A role for the autophagic receptor, SQSTM1/p62, in trafficking NF-kB/RelA to nucleolar aggresomes 94%
- Kinetics characterization of ASXL1/2-mediated allosteric regulation of BAP1 deubiquitinase 94%
- Intracellular Retention of Estradiol is Mediated by GRAM Domain Containing Protein ASTER-B in Breast Cancer Cells 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.