Autophagy in the Immunosuppressive Perivascular Microenvironment of Glioblastoma

被引:23
作者
Molina, Maria L. [1 ,2 ]
Garcia-Bernal, David [3 ]
Martinez, Salvador [2 ]
Valdor, Rut [1 ,3 ]
机构
[1] Biomed Res Inst Murcia IMIB Arrixaca, Brain Regionalizat & Dev Gene Unit, Murcia 30120, Spain
[2] UMH, CIBERSAM, ISCIII, Inst Neurociencias,CSIC, Alacant 03550, Spain
[3] Univ Murcia, Dept Internal Med, Biomed Res Inst Murcia IMIBArrixaca, Murcia 30120, Spain
关键词
autophagy; chaperone-mediated autophagy; tumor; glioblastoma; perivascular cells; pericytes; immunosuppressive; tumor immune tolerance; autophagy inhibitors; CHAPERONE-MEDIATED AUTOPHAGY; CLASS-II PRESENTATION; REGULATORY T-CELLS; TUMOR-SUPPRESSOR; MACROPHAGE AUTOPHAGY; OXIDATIVE STRESS; B-CELLS; CANCER; DEGRADATION; ACTIVATION;
D O I
10.3390/cancers12010102
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Glioblastoma (GB) has been shown to up-regulate autophagy with anti- or pro-oncogenic effects. Recently, our group has shown how GB cells aberrantly up-regulate chaperone-mediated autophagy (CMA) in pericytes of peritumoral areas to modulate their immune function through cell-cell interaction and in the tumor's own benefit. Thus, to understand GB progression, the effect that GB cells could have on autophagy of immune cells that surround the tumor needs to be deeply explored. In this review, we summarize all the latest evidence of several molecular and cellular immunosuppressive mechanisms in the perivascular tumor microenvironment. This immunosuppression has been reported to facilitate GB progression and may be differently modulated by several types of autophagy as a critical point to be considered for therapeutic interventions.
引用
收藏
页数:20
相关论文
共 169 条
[131]   Targeting RAS-ERK signalling in cancer: promises and challenges [J].
Samatar, Ahmed A. ;
Poulikakos, Poulikos I. .
NATURE REVIEWS DRUG DISCOVERY, 2014, 13 (12) :928-+
[132]   Deficient Chaperone-Mediated Autophagy in Liver Leads to Metabolic Dysregulation [J].
Schneider, Jaime L. ;
Suh, Yousin ;
Cuervo, Ana Maria .
CELL METABOLISM, 2014, 20 (03) :417-432
[133]   TFEB and the CLEAR network [J].
Settembre, Carmine ;
Medina, Diego L. .
LYSOSOMES AND LYSOSOMAL DISEASES, 2015, 126 :45-62
[134]   Dual Targeting of the Autophagic Regulatory Circuitry in Gliomas with Repurposed Drugs Elicits Cell-Lethal Autophagy and Therapeutic Benefit [J].
Shchors, Ksenya ;
Massaras, Aristea ;
Hanahan, Douglas .
CANCER CELL, 2015, 28 (04) :456-471
[135]   Autophagy in Neutrophils: From Granulopoiesis to Neutrophil Extracellular Traps [J].
Skendros, Panagiotis ;
Mitroulis, Ioannis ;
Ritis, Konstantinos .
FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2018, 6
[136]   Adding chloroquine to conventional treatment for glioblastoma multiforme -: A randomized, double-blind, placebo-controlled trial [J].
Sotelo, J ;
Briceño, E ;
López-González, MA .
ANNALS OF INTERNAL MEDICINE, 2006, 144 (05) :337-343
[137]   Cargo recognition and trafficking in selective autophagy [J].
Stolz, Alexandra ;
Ernst, Andreas ;
Dikic, Ivan .
NATURE CELL BIOLOGY, 2014, 16 (06) :495-501
[138]   Autophagy and chemotherapy resistance: a promising therapeutic target for cancer treatment [J].
Sui, X. ;
Chen, R. ;
Wang, Z. ;
Huang, Z. ;
Kong, N. ;
Zhang, M. ;
Han, W. ;
Lou, F. ;
Yang, J. ;
Zhang, Q. ;
Wang, X. ;
He, C. ;
Pan, H. .
CELL DEATH & DISEASE, 2013, 4 :e838-e838
[139]   Glioblastoma ablates pericytes antitumor immune function through aberrant up-regulation of chaperone-mediated autophagy [J].
Valdor, Rut ;
Garcia-Bernal, David ;
Riquelme, Dolores ;
Martinez, Carlos M. ;
Moraleda, Jose M. ;
Cuervo, Ana Maria ;
Macian, Fernando ;
Martinez, Salvador .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (41) :20655-20665
[140]  
Valdor R, 2017, ONCOTARGET, V8, P68614, DOI 10.18632/oncotarget.19804