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Additional file 2 of Identifying and exploiting combinatorial synthetic lethality by characterizing adaptive kinome rewiring of EGFRvIII-driven glioblastoma

Title: Additional file 2 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 2: Fig. S1 Model generation. Cdkn2a−/− mouse astrocytes were cultured and transduced with retrovirus encoding human EGFRvIII as described (A) [4, 40]. Resistant models (B) were generated in vitro via dose escalation of EGFR TKI (gefitinib or erlotinib) as described [51]. Figure created with BioRender
Document Type: still image
Language: unknown
DOI: 10.6084/m9.figshare.29431966.v1
Availability: https://doi.org/10.6084/m9.figshare.29431966.v1; https://figshare.com/articles/figure/Additional_file_2_of_Identifying_and_exploiting_combinatorial_synthetic_lethality_by_characterizing_adaptive_kinome_rewiring_of_EGFRvIII-driven_glioblastoma/29431966
Rights: CC BY
Accession Number: edsbas.74765476
Database: BASE