Integrative analysis of proteome and ubiquitylome reveals unique features of lysosomal and endocytic pathways in gefitinib‐resistant non‐small cell lung cancer cells

W Li, H Wang, Y Yang, T Zhao, Z Zhang, Y Tian… - …, 2018 - Wiley Online Library
W Li, H Wang, Y Yang, T Zhao, Z Zhang, Y Tian, Z Shi, X Peng, F Li, Y Feng, L Zhang…
Proteomics, 2018Wiley Online Library
Non‐small cell lung cancer (NSCLC) patients carrying EGFR activating mutations treated
with gefitinib, a tyrosine kinase inhibitor, will develop drug resistance. Ubiquitylation is one
of major posttranslational modifications of proteins affecting the stability or function of
proteins. However, the role of protein ubiquitylation in gefitinib resistance is poorly
understood. To systematically identify the global change in protein expression and
ubiquitylation during gefitinib resistance, a quantitative global proteome and ubiquitylome …
Abstract
Non‐small cell lung cancer (NSCLC) patients carrying EGFR activating mutations treated with gefitinib, a tyrosine kinase inhibitor, will develop drug resistance. Ubiquitylation is one of major posttranslational modifications of proteins affecting the stability or function of proteins. However, the role of protein ubiquitylation in gefitinib resistance is poorly understood. To systematically identify the global change in protein expression and ubiquitylation during gefitinib resistance, a quantitative global proteome and ubiquitylome study in a pair of gefitinib‐resistant and sensitive NSCLC cells is carried out. Altogether, changes in expression of 3773 proteins are quantified, and changes in ubiquitylation of 2893 lysine sites in 1415 proteins are measured in both cells. Interestingly, lysosomal and endocytic pathways, which are involved in autophagy regulation, are enriched with upregulated proteins or ubiquitylated proteins in gefitinib‐resistant cells. In addition, HMGA2 overexpression or ALOX5 knockdown suppresses gefitinib resistance in NSCLC cells by inhibiting autophagy. Overall, these results reveal the previously unknown global ubiquitylome and proteomic features associated with gefitinib resistance, uncover the opposing roles of HMGA2 or ALOX5 in regulating gefitinib resistance and autophagy, and will help to identify new therapeutic targets in overcoming gefitinib resistance.
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