Protein sumoylation with SUMO1 promoted by Pin1 in glioma stem cells augments glioblastoma malignancy

相扑蛋白 癌症研究 免疫沉淀 干细胞 针脚1 基因沉默 生物 细胞生物学 胶质瘤 分子生物学 泛素 生物化学 细胞培养 遗传学 基因 异构酶
作者
Aili Zhang,Weiwei Tao,Kui Zhai,Xiaoguang Fang,Zhi Huang,Jennifer S. Yu,Andrew E. Sloan,Jeremy N. Rich,Wenchao Zhou,Shideng Bao
出处
期刊:Neuro-oncology [Oxford University Press]
卷期号:22 (12): 1809-1821 被引量:27
标识
DOI:10.1093/neuonc/noaa150
摘要

Abstract Background The tumorigenic potential of glioma stem cells (GSCs) is associated with multiple reversible molecular alternations, but the role of posttranslational protein sumoylation in GSCs has not been elucidated. The development of GSC-targeting drugs relies on the discovery of GSC-preferential molecular modifications and the relevant signaling pathways. In this work, we investigated the protein sumoylation status, the major sumoylated substrate, and the key regulatory enzyme in GSCs to explore the therapeutic potential of disrupting protein sumoylation for glioblastoma (GBM) treatment. Methods Patient-derived GSCs, primary GBM sections, and intracranial GBM xenografts were used to determine protein sumoylation and the related molecular mechanisms by immunoblot, quantitative PCR, immunoprecipitation, immunofluorescence, and immunohistochemistry. Orthotopic GBM xenograft models were applied to investigate the inhibition of tumor growth by disrupting protein sumoylation with short hairpin (sh)RNAs or molecular inhibitors. Results We show that high levels of small ubiquitin-related modifier 1 (SUMO1)—but not SUMO2/3—modified sumoylation are preferentially present in GSCs. The promyelocytic leukemia (PML) protein is a major SUMO1-sumoylated substrate in GSCs, whose sumoylation facilitates its interaction with c-Myc to stabilize c-Myc proteins. The prolyl-isomerase Pin1 is preferentially expressed in GSCs and functions as the key enzyme to promote SUMO1 sumoylation. Disruption of SUMO1 sumoylation by Pin1 silencing with shRNAs or inhibition with its inhibitor Juglone markedly abrogated GSC maintenance and mitigated GSC-driven tumor growth. Conclusions Our findings indicate that high SUMO1-modified protein sumoylation as a feature of GSCs is critical for GSC maintenance, suggesting that targeting SUMO1 sumoylation may effectively improve GBM treatment.

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