LZTR1 Mutation Mediates Oncogenesis through Stabilization of EGFR and AXL

Aram Ko1, Mohammad Hasanain1, Young Taek Oh1

  • 1Institute for Cancer Genetics, Columbia University Medical Center, New York, New York.

Cancer Discovery
|November 29, 2022
PubMed

Insights

Loss of LZTR1 protein function in cancer leads to the accumulation of EGFR and AXL receptor tyrosine kinases, driving tumor growth. Targeting both EGFR and AXL offers a new precision therapy for LZTR1-mutant cancers.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • LZTR1 (Leucine zipper and sterile alpha motif-containing protein 1) acts as a substrate-specific adaptor for CUL3-dependent ubiquitin ligase.
  • Mutations in LZTR1 are frequently observed in both sporadic and syndromic cancers, suggesting its critical role in tumorigenesis.

Purpose of the Study:

  • To identify LZTR1 substrates and investigate their role in cancer development upon LZTR1 loss-of-function.
  • To explore the therapeutic vulnerabilities in LZTR1-mutant cancers.

Main Methods:

  • Biochemical and genetic studies were employed to identify LZTR1 substrates.
  • Unbiased screens were used to pinpoint LZTR1 interactors.
  • Conditional inactivation of Lztr1 and Cdkn2a in mouse models was performed to study tumor formation.

Main Results:

  • EGFR (Epidermal Growth Factor Receptor) and AXL receptor tyrosine kinases were identified as LZTR1 substrates targeted for degradation.
  • LZTR1 mutations impaired the degradation of EGFR and AXL, leading to dysregulated growth factor signaling.
  • Conditional Lztr1 and Cdkn2a inactivation in mice resulted in peripheral nervous system tumors, mimicking schwannomatosis, with aberrant EGFR and AXL accumulation.

Conclusions:

  • LZTR1 inactivation drives tumorigenesis by causing EGFR and AXL accumulation and aberrant signaling.
  • LZTR1-mutant tumors exhibit a specific vulnerability to combined EGFR and AXL inhibition, presenting a potential precision therapy strategy.

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