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DNA Polymerase Alpha Subunit B Is a Binding Protein for Erlotinib Resistance in Non-Small Cell Lung Cancer.
Kim, Tae Young; Ji, Eun Sun; Lee, Ju Yeon; Kim, Jin Young; Yoo, Jong Shin; Szasz, A Marcell; Dome, Balazs; Marko-Varga, Gyorgy; Kwon, Ho Jeong.
Afiliación
  • Kim TY; Chemical Genomics Global Research Lab, Department of Biotechnology, College of Life Science & Biotechnology, Yonsei University, Seoul 120-749, Korea.
  • Ji ES; Korea Basic Science Institute, Ochang 28119, Korea.
  • Lee JY; Korea Basic Science Institute, Ochang 28119, Korea.
  • Kim JY; Korea Basic Science Institute, Ochang 28119, Korea.
  • Yoo JS; Korea Basic Science Institute, Ochang 28119, Korea.
  • Szasz AM; Department of Tumor Biology, National Korányi Institute of Pulmonology, 1121 Budapest, Hungary.
  • Dome B; Department of Bioinformatics, Semmelweis University, 1094 Budapest, Hungary.
  • Marko-Varga G; Division Clinical Protein Science & Imaging, Department of Clinical Sciences (Lund) and Department of Biomedical Engineering, Lund University, SE-221 84 Lund, Sweden.
  • Kwon HJ; Department of Thoracic Surgery, National Institute of Oncology and Semmelweis University, 1117 Budapest, Hungary.
Cancers (Basel) ; 12(9)2020 Sep 13.
Article en En | MEDLINE | ID: mdl-32933200
Erlotinib inhibits epithelial growth factor receptor (EGFR) kinase activity and is used to treat non-small cell lung cancer (NSCLC). Despite its high efficacy, recurrence can occur in patients who become resistant to the drug. To address the underlying mechanism of Erlotinib resistance, we investigated additional mechanisms related to mode-of-drug-action, by multiple protein-binding interactions, besides EGFR by using drug affinity responsive target stability (DARTS) and liquid chromatography-mass spectrometry (LC-MS/MS) methods with non-labeled Erlotinib. DNA polymerase alpha subunit B (POLA2) was identified as a new Erlotinib binding protein that was validated by the DARTS platform, complemented with cellular thermal shift assays. Genetic knock-down of POLA2 promoted the anti-proliferative effect of the drug in the Erlotinib-resistant cell line H1299 with high POLA2 expression, whereas the overexpression of POLA2 restored anti-proliferative effects in the Erlotinib-sensitive cell line HCC827 with low POLA2 expression. Importantly, POLA2 expression levels in four NSCLC cell lines were positively correlated with anti-proliferative Erlotinib efficacy (Pearson correlation coefficient, R = 0.9886). These results suggest that POLA2 is a novel complementary target protein of Erlotinib, and could clinically provide validity as a surrogate marker for drug resistance in patients with NSCLC.
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Texto completo: 1 Base de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: Cancers (Basel) Año: 2020 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: Cancers (Basel) Año: 2020 Tipo del documento: Article