MerlinS13 phosphorylation controls meningioma Wnt signaling and magnetic resonance imaging features

Charlotte Eaton1, Lauro Avalos1, S John Liu1

  • 1University of California San Francisco.

Research Square
|March 30, 2023
PubMed

Insights

Merlin protein regulates meningioma growth via Wnt signaling. Merlin-intact meningiomas with specific phosphorylation show favorable outcomes, detectable via MRI apparent diffusion coefficient (ADC).

Area of Science:

  • Neuro-oncology
  • Molecular Biology
  • Medical Imaging

Background:

  • Meningiomas are common brain tumors linked to NF2/Merlin inactivation.
  • Merlin-intact meningiomas often have better prognoses, but their growth mechanisms are unclear.
  • Non-invasive biomarkers are needed to predict outcomes and guide treatment for Merlin-intact meningiomas.

Approach:

  • Integrated multi-omics (single-cell RNA sequencing, proteomics) and functional studies.
  • Investigated Merlin's role in Wnt signaling and β-catenin interactions.
  • Correlated MRI apparent diffusion coefficient (ADC) with Merlin phosphorylation and clinical outcomes in xenografts and human patients.

Key Points:

  • Merlin drives Wnt signaling and meningioma growth through a feed-forward loop requiring serine 13 (S13) dephosphorylation.
  • Merlin S13 phosphorylation attenuates inhibitory interactions with β-catenin, activating the Wnt pathway.
  • High ADC values on diffusion-weighted MRI indicate Merlin-intact meningiomas with S13 phosphorylation and favorable outcomes.

Conclusions:

  • Merlin posttranslational modifications regulate Wnt signaling in meningiomas lacking NF2/Merlin inactivation.
  • Established a non-invasive MRI biomarker (ADC) to identify favorable-risk meningiomas.
  • Findings may guide treatment de-escalation and surveillance strategies for patients with Merlin-intact meningiomas.

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