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Additional file 9 of Identifying and exploiting combinatorial synthetic lethality by characterizing adaptive kinome rewiring of EGFRvIII-driven glioblastoma

Title: Additional file 9 of Identifying and exploiting combinatorial synthetic lethality by characterizing adaptive kinome rewiring of EGFRvIII-driven glioblastoma
Authors: Benjamin Lin; Abigail K. Shelton; Erin Smithberger; Julia Ziebro; Kasey R. Skinner; Ryan E. Bash; Richard Kirkman; Allie Stamper; Madison Butler; Alex Flores; Steven P. Angus; Michael P. East; Timothy F. Cloughesy; David A. Nathanson; Michael E. Berens; Jann N. Sarkaria; Zev A. Binder; Donald M. O’Rourke; Timothy C. Howton; Brittany N. Lasseigne; Christopher D. Willey; Gary L. Johnson; Anita B. Hjelmeland; Frank B. Furnari; C. Ryan Miller
Publication Year: 2025
Collection: The University of Auckland: Figshare
Subject Terms: Biochemistry; Medicine; Genetics; Pharmacology; Biotechnology; Marine Biology; Cancer; Hematology; Virology; Computational Biology; Biological Sciences not elsewhere classified; Chemical Sciences not elsewhere classified; EGFR; Glioblastoma; Synthetic lethality; Kin­ome rewiring; Upfront combinatorial therapy
Description: Supplementary Material 9: Fig. S8 Afatinib induces acute kinome rewiring in resistant clones. K-means clustering identifies upregulated “up” or downregulated “down” DE kinase proteins after drug treatment. Heatmaps of DE kinases after drug treatment are shown for the following resistant lines compared to parental CEv3 cells: E4 (A), E5 (B), G1 (C), G5 (D), G8 (E), and G12 (F)
Document Type: still image
Language: unknown
DOI: 10.6084/m9.figshare.29432014.v1
Availability: https://doi.org/10.6084/m9.figshare.29432014.v1; https://figshare.com/articles/figure/Additional_file_9_of_Identifying_and_exploiting_combinatorial_synthetic_lethality_by_characterizing_adaptive_kinome_rewiring_of_EGFRvIII-driven_glioblastoma/29432014
Rights: CC BY
Accession Number: edsbas.C85D37FC
Database: BASE