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默林磷酸化调控脑膜瘤Wnt信号通路及磁共振成像特征。

Merlin phosphorylation controls meningioma Wnt signaling and magnetic resonance imaging features.

作者信息

Eaton Charlotte, Avalos Lauro, Liu S John, Casey-Clyde Tim, Bisignano Paola, Lucas Calixto-Hope, Stevenson Erica, Choudhury Abrar, Vasudevan Harish, Magill Stephen, Krogan Nevan, Villanueva-Meyer Javier, Swaney Danielle, Raleigh David

机构信息

University of California San Francisco.

Vanderbilt.

出版信息

Res Sq. 2023 Mar 14:rs.3.rs-2577844. doi: 10.21203/rs.3.rs-2577844/v1.

Abstract

Meningiomas are the most common primary intracranial tumors and are associated with inactivation of the tumor suppressor /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 /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.

摘要

脑膜瘤是最常见的原发性颅内肿瘤,与肿瘤抑制因子Merlin的失活有关,但三分之一的脑膜瘤保留Merlin表达,通常具有良好的临床预后。Merlin完整的脑膜瘤生长的生化机制尚未完全了解,目前缺乏能够预测脑膜瘤预后、可用于指导Merlin完整的脑膜瘤治疗降级或影像监测的非侵入性生物标志物。在这里,我们整合了单细胞RNA测序、邻近标记蛋白质组质谱分析、机制和功能研究方法,以及针对脑膜瘤细胞、异种移植瘤和人类患者的磁共振成像(MRI),以确定区分具有良好临床预后的Merlin完整的脑膜瘤与具有不良临床预后的脑膜瘤的生化机制和影像生物标志物。我们发现,Merlin通过一种前馈机制驱动脑膜瘤的Wnt信号传导和肿瘤生长,该机制需要Merlin的丝氨酸13(S13)去磷酸化,以减弱与β-连环蛋白的抑制性相互作用并激活Wnt通路。对异种移植瘤和人类患者的脑膜瘤MRI分析显示,具有S13磷酸化和良好临床预后的Merlin完整的脑膜瘤在扩散加权成像上与高表观扩散系数(ADC)相关。总之,我们的结果揭示了在没有Merlin失活的肿瘤中调节脑膜瘤Wnt信号传导和肿瘤生长的Merlin翻译后修饰。为了将这些发现转化为临床实践,我们建立了一种非侵入性影像生物标志物,可用于指导预后良好的脑膜瘤患者的治疗降级或影像监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c9d/10055685/d90489793b6d/nihpp-rs2577844v1-f0001.jpg

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