4.7 Article

Thyroid receptor-interacting protein 13 and EGFR form a feedforward loop promoting glioblastoma growth

Journal

CANCER LETTERS
Volume 493, Issue -, Pages 156-166

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.canlet.2020.08.023

Keywords

Glioblastoma (GBM); EGFR; EGFRvIII; TRIP13; Osimertinib

Categories

Funding

  1. National Natural Science Foundation of China [81572707, 81772973, 81972338, 81402071]
  2. Clinical Capability Construction Project for Liaoning Provincial Hospitals [LNCCC-B04-2015]
  3. Key Project of Shanghai Health and Family Planning Commission [201640020]

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Epidermal growth factor receptor (EGFR) amplification and EGFRvIII mutation drive glioblastoma (GBM) pathogenesis, but their regulation remains elusive. Here we characterized the EGFR/EGFRvIII interactome in GBM and identified thyroid receptor-interacting protein 13 (TRIP13), an AAA + ATPase, as an EGFR/EGFRvIII-associated protein independent of its ATPase activity. Functionally, TRIP13 augmented EGFR pathway activation and contributed to EGFR/EGFRvIII-driven GBM growth in GBM spheroids and orthotopic GBM xenograft models. Mechanistically, TRIP13 enhanced EGFR protein abundance in part by preventing Cbl-mediated ubiquitination and proteasomal degradation. Reciprocally, TRIP13 was phosphorylated at tyrosine(Y) 56 by EGFRvIII and EGF-activated EGFR. Abrogating TRIP13 Y56 phosphorylation dramatically attenuated TRIP13 expression-enhanced EGFR signaling and GBM cell growth. Clinically, TRIP13 expression was upregulated in GBM specimens and associated with poor patient outcome. In GBM, TRIP13 localized to cell membrane and cytoplasma and exhibited oncogenic effects in vitro and in vivo, depending on EGFR signaling but not the TRIP13 ATPase activity. Collectively, our findings uncover that TRIP13 and EGFR form a feedforward loop to potentiate EGFR signaling in GBM growth and identify a previously unrecognized ATPase activity-independent mode of action of TRIP13 in GBM biology.

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