Chaperone-Mediated Autophagy Controls Proteomic and Transcriptomic Pathways to Maintain Glioma Stem Cell Activity

Author:

Auzmendi-Iriarte Jaione1,Otaegi-Ugartemendia Maddalen1,Carrasco-Garcia Estefania1,Azkargorta Mikel2,Diaz Antonio3,Saenz-Antoñanzas Ander1,Andermatten Joaquin Andrés4ORCID,Garcia-Puga Mikel1ORCID,Garcia Idoia1,Elua-Pinin Alejandro4,Ruiz Irune14,Sampron Nicolas14,Elortza Felix2ORCID,Cuervo Ana Maria3,Matheu Ander156

Affiliation:

1. 1Cellular Oncology Group, Biodonostia Health Research Institute, San Sebastian, Spain.

2. 2Proteomics Platform, CIC bioGUNE, Basque Research and Technology Alliance (BRTA), CIBERehd, ProteoRed-ISCIII, Spain.

3. 3Department of Development and Molecular Biology, Albert Einstein College of Medicine, Institute for Aging Studies, Albert Einstein College of Medicine, Bronx, New York.

4. 4Donostia University Hospital, Osakidetza, San Sebastian, Spain.

5. 5CIBER de Fragilidad y Envejecimiento Saludable (CIBERfes), Madrid, Spain.

6. 6IKERBASQUE, Basque Foundation for Science, Bilbao, Spain.

Abstract

Abstract Chaperone-mediated autophagy (CMA) is a homeostatic process essential for the lysosomal degradation of a selected subset of the proteome. CMA activity directly depends on the levels of LAMP2A, a critical receptor for CMA substrate proteins at the lysosomal membrane. In glioblastoma (GBM), the most common and aggressive brain cancer in adulthood, high levels of LAMP2A in the tumor and tumor-associated pericytes have been linked to temozolomide resistance and tumor progression. However, the role of LAMP2A, and hence CMA, in any cancer stem cell type or in glioblastoma stem cells (GSC) remains unknown. In this work, we show that LAMP2A expression is enriched in patient-derived GSCs, and its depletion diminishes GSC-mediated tumorigenic activities. Conversely, overexpression of LAMP2A facilitates the acquisition of GSC properties. Proteomic and transcriptomic analysis of LAMP2A-depleted GSCs revealed reduced extracellular matrix interaction effectors in both analyses. Moreover, pathways related to mitochondrial metabolism and the immune system were differentially deregulated at the proteome level. Furthermore, clinical samples of GBM tissue presented overexpression of LAMP2, which correlated with advanced glioma grade and poor overall survival. In conclusion, we identified a novel role of CMA in directly regulating GSCs activity via multiple pathways at the proteome and transcriptome levels. Significance: A receptor of chaperone-mediated autophagy regulates glioblastoma stem cells and may serve as a potential biomarker for advanced tumor grade and poor survival in this disease.

Funder

Department of Education, University and Research of the Basque Government

Spanish Ministry of Universities

Instituto de Salud Carlos III

University of the Basque Country

Stop Fuga de Cerebros fellowship

NIH

FEDER Funds

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology

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