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Published on: April 1, 2022
MerlinS13 phosphorylation controls meningioma Wnt signaling and magnetic resonance imaging features
Charlotte Eaton1, Lauro Avalos1, S John Liu1
1University of California San Francisco.
Abstract:
Meningiomas are the most common primary intracranial tumors and are associated with inactivation of the tumor suppressor NF2/Merlin, but one-third of meningiomas retain Merlin expression and typically have favorable clinical outcomes. Biochemical mechanisms underlying Merlin-intact meningioma growth are incompletely understood, and non-invasive biomarkers that predict meningioma outcomes and could be used to guide treatment de-escalation or imaging surveillance of Merlin-intact meningiomas are lacking. Here we integrate single-cell RNA sequencing, proximity-labeling proteomic mass spectrometry, mechanistic and functional approaches, and magnetic resonance imaging (MRI) across meningioma cells, xenografts, and human patients to define biochemical mechanisms and an imaging biomarker that distinguish Merlin-intact meningiomas with favorable clinical outcomes from meningiomas with unfavorable clinical outcomes. We find Merlin drives meningioma Wnt signaling and tumor growth through a feed-forward mechanism that requires Merlin dephosphorylation on serine 13 (S13) to attenuate inhibitory interactions with β-catenin and activate the Wnt pathway. Meningioma MRI analyses of xenografts and human patients show Merlin-intact meningiomas with S13 phosphorylation and favorable clinical outcomes are associated with high apparent diffusion coefficient (ADC) on diffusion-weighted imaging. In sum, our results shed light on Merlin posttranslational modifications that regulate meningioma Wnt signaling and tumor growth in tumors without NF2/Merlin inactivation. To translate these findings to clinical practice, we establish a non-invasive imaging biomarker that could be used to guide treatment de-escalation or imaging surveillance for patients with favorable meningiomas.
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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