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Sorting nexin 10 sustains PDGF receptor signaling in glioblastoma stem cells via endosomal protein sorting
Ryan C. Gimple, … , Sameer Agnihotri, Jeremy N. Rich
Ryan C. Gimple, … , Sameer Agnihotri, Jeremy N. Rich
Published February 16, 2023
Citation Information: JCI Insight. 2023;8(6):e158077. https://doi.org/10.1172/jci.insight.158077.
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Research Article Oncology Stem cells

Sorting nexin 10 sustains PDGF receptor signaling in glioblastoma stem cells via endosomal protein sorting

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Abstract

Glioblastoma is the most malignant primary brain tumor, the prognosis of which remains dismal even with aggressive surgical, medical, and radiation therapies. Glioblastoma stem cells (GSCs) promote therapeutic resistance and cellular heterogeneity due to their self-renewal properties and capacity for plasticity. To understand the molecular processes essential for maintaining GSCs, we performed an integrative analysis comparing active enhancer landscapes, transcriptional profiles, and functional genomics profiles of GSCs and non-neoplastic neural stem cells (NSCs). We identified sorting nexin 10 (SNX10), an endosomal protein sorting factor, as selectively expressed in GSCs compared with NSCs and essential for GSC survival. Targeting SNX10 impaired GSC viability and proliferation, induced apoptosis, and reduced self-renewal capacity. Mechanistically, GSCs utilized endosomal protein sorting to promote platelet-derived growth factor receptor β (PDGFRβ) proliferative and stem cell signaling pathways through posttranscriptional regulation of the PDGFR tyrosine kinase. Targeting SNX10 expression extended survival of orthotopic xenograft–bearing mice, and high SNX10 expression correlated with poor glioblastoma patient prognosis, suggesting its potential clinical importance. Thus, our study reveals an essential connection between endosomal protein sorting and oncogenic receptor tyrosine kinase signaling and suggests that targeting endosomal sorting may represent a promising therapeutic approach for glioblastoma treatment.

Authors

Ryan C. Gimple, Guoxin Zhang, Shuai Wang, Tengfei Huang, Jina Lee, Suchet Taori, Deguan Lv, Deobrat Dixit, Matthew E. Halbert, Andrew R. Morton, Reilly L. Kidwell, Zhen Dong, Briana C. Prager, Leo J.Y. Kim, Zhixin Qiu, Linjie Zhao, Qi Xie, Qiulian Wu, Sameer Agnihotri, Jeremy N. Rich

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Figure 3

SNX10 is preferentially expressed in glioblastoma stem cells compared with non-neoplastic neural stem cells, nonmalignant neural cultures, and differentiated glioblastoma cells.

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SNX10 is preferentially expressed in glioblastoma stem cells compared wi...
(A) H3K27ac ChIP-seq signal across the SNX10 locus in 3 matched GSC (red), differentiated glioma cell (DGC) samples (blue), and 2 replicates of DGCs reprogrammed with GSC-specific transcription factors (TFs, purple) (35). (B) qPCR analysis of SNX10 mRNA expression in different GSCs, NSCs, and nonmalignant (NM) brain cultures. n = 3. (C) qPCR analysis of SNX10 mRNA expression in GSCs and matched DGCs. n = 3. (D) Western blot of SNX10 protein levels in different GSCs (marked in red), NSCs (marked in green), and nonmalignant (marked in blue) brain culture. (E) Western blot to examine SNX10 protein levels in different GSCs and matched DGCs. In D and E, tubulin was used as loading control. Samples were run in a single gel with loading controls shown in the supplemental material. Data are presented as mean ± SD. P values were calculated by 2-way ANOVA with Tukey’s multiple-comparison test. **P < 0.01; ***P < 0.001. NS, not significant.

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