Literature DB >> 33593822

Tumor-Derived Pericytes Driven by EGFR Mutations Govern the Vascular and Immune Microenvironment of Gliomas.

Berta Segura-Collar1, María Garranzo-Asensio1, Beatriz Herranz1,2, Esther Hernández-SanMiguel1, Teresa Cejalvo1, Bárbara S Casas3, Ander Matheu4,5,6, Ángel Pérez-Núñez7, Juan Manuel Sepúlveda-Sánchez8, Aurelio Hernández-Laín8, Verónica Palma3, Ricardo Gargini9, Pilar Sánchez-Gómez9.   

Abstract

The extraordinary plasticity of glioma cells allows them to contribute to different cellular compartments in tumor vessels, reinforcing the vascular architecture. It was recently revealed that targeting glioma-derived pericytes, which represent a big percentage of the mural cell population in aggressive tumors, increases the permeability of the vessels and improves the efficiency of chemotherapy. However, the molecular determinants of this transdifferentiation process have not been elucidated. Here we show that mutations in EGFR stimulate the capacity of glioma cells to function as pericytes in a BMX- (bone marrow and X-linked) and SOX9-dependent manner. Subsequent activation of platelet-derived growth factor receptor beta in the vessel walls of EGFR-mutant gliomas stabilized the vasculature and facilitated the recruitment of immune cells. These changes in the tumor microenvironment conferred a growth advantage to the tumors but also rendered them sensitive to pericyte-targeting molecules such as ibrutinib or sunitinib. In the absence of EGFR mutations, high-grade gliomas were enriched in blood vessels, but showed a highly disrupted blood-brain barrier due to the decreased BMX/SOX9 activation and pericyte coverage, which led to poor oxygenation, necrosis, and hypoxia. Overall, these findings identify EGFR mutations as key regulators of the glioma-to-pericyte transdifferentiation, highlighting the intricate relationship between the tumor cells and their vascular and immune milieu. Our results lay the foundations for a vascular-dependent stratification of gliomas and suggest different therapeutic vulnerabilities determined by the genetic status of EGFR. SIGNIFICANCE: This study identifies the EGFR-related mechanisms that govern the capacity of glioma cells to transdifferentiate into pericytes, regulating the vascular and immune phenotypes of the tumors. GRAPHICAL ABSTRACT: http://cancerres.aacrjournals.org/content/canres/81/8/2142/F1.large.jpg. ©2021 American Association for Cancer Research.

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Year:  2021        PMID: 33593822     DOI: 10.1158/0008-5472.CAN-20-3558

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   13.312


  8 in total

Review 1.  Advances in the Immunotherapeutic Potential of Isocitrate Dehydrogenase Mutations in Glioma.

Authors:  Feng Tang; Zhiyong Pan; Yi Wang; Tian Lan; Mengyue Wang; Fengping Li; Wei Quan; Zhenyuan Liu; Zefen Wang; Zhiqiang Li
Journal:  Neurosci Bull       Date:  2022-06-07       Impact factor: 5.271

2.  IDP-410: a Novel Therapeutic Peptide that Alters N-MYC Stability and Reduces Angiogenesis and Tumor Progression in Glioblastomas.

Authors:  Ricardo Gargini; Berta Segura-Collar; María Garranzo-Asensio; Rafael Hortigüela; Patricia Iglesias-Hernández; Daniel Lobato-Alonso; Miguel Moreno-Raja; Santiago Esteban-Martin; Juan M Sepúlveda-Sánchez; Laura Nevola; Pilar Sánchez-Gómez
Journal:  Neurotherapeutics       Date:  2022-01-31       Impact factor: 6.088

3.  Immune deconvolution and temporal mapping identifies stromal targets and developmental intervals for abrogating murine low-grade optic glioma formation.

Authors:  Amanda de Andrade Costa; Jit Chatterjee; Olivia Cobb; Elizabeth Cordell; Astoria Chao; Suzanne Schaeffer; Andrea Goldstein; Sonika Dahiya; David H Gutmann
Journal:  Neurooncol Adv       Date:  2021-12-31

4.  DNTTIP2 Expression is Associated with Macrophage Infiltration and Malignant Characteristics in Low-Grade Glioma.

Authors:  Yuan-Jie Liu; Shu-Hong Zeng; Wei-Hua Qian; Min-Xian Tao; Ying-Ying Zhu; Jie-Pin Li
Journal:  Pharmgenomics Pers Med       Date:  2022-03-24

Review 5.  Chaperone-Mediated Autophagy in Pericytes: A Key Target for the Development of New Treatments against Glioblastoma Progression.

Authors:  María Dolores Salinas; Rut Valdor
Journal:  Int J Mol Sci       Date:  2022-08-10       Impact factor: 6.208

6.  Identification of a 6-RBP gene signature for a comprehensive analysis of glioma and ischemic stroke: Cognitive impairment and aging-related hypoxic stress.

Authors:  Weiwei Lin; Qiangwei Wang; Yisheng Chen; Ning Wang; Qingbin Ni; Chunhua Qi; Qian Wang; Yongjian Zhu
Journal:  Front Aging Neurosci       Date:  2022-09-01       Impact factor: 5.702

7.  Construction of Interferon-Gamma-Related Gene Signature to Characterize the Immune-Inflamed Phenotype of Glioblastoma and Predict Prognosis, Efficacy of Immunotherapy and Radiotherapy.

Authors:  Hang Ji; Yixu Ba; Shuai Ma; Kuiyuan Hou; Shan Mi; Xin Gao; Jiaqi Jin; Qin Gong; Ting Liu; Fang Wang; Zhihui Liu; Shupeng Li; Jianyang Du; Shaoshan Hu
Journal:  Front Immunol       Date:  2021-09-10       Impact factor: 7.561

8.  Novel Immune-Related Gene-Based Signature Characterizing an Inflamed Microenvironment Predicts Prognosis and Radiotherapy Efficacy in Glioblastoma.

Authors:  Hang Ji; Hongtao Zhao; Jiaqi Jin; Zhihui Liu; Xin Gao; Fang Wang; Jiawei Dong; Xiuwei Yan; Jiheng Zhang; Nan Wang; Jianyang Du; Shaoshan Hu
Journal:  Front Genet       Date:  2022-01-17       Impact factor: 4.599

  8 in total

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