Author:
Cao Shuo,Wang Di,Wang Ping,Liu Yunhui,Dong Weiwei,Ruan Xuelei,Liu Libo,Xue Yixue,E Tiange,Lin Hongda,Liu Xiaobai
Abstract
AbstractHuman malignant gliomas are the most common and aggressive primary malignant tumors of the human central nervous system. Vasculogenic mimicry (VM), which refers to the formation of a tumor blood supply system independently of endothelial cells, contributes to the malignant progression of glioma. Therefore, VM is considered a potential target for glioma therapy. Accumulated evidence indicates that alterations in SUMOylation, a reversible post-translational modification, are involved in tumorigenesis and progression. In the present study, we found that UBA2 and RALY were upregulated in glioma tissues and cell lines. Downregulation of UBA2 and RALY inhibited the migration, invasion, and VM of glioma cells. RALY can be SUMOylated by conjugation with SUMO1, which is facilitated by the overexpression of UBA2. The SUMOylation of RALY increases its stability, which in turn increases its expression as well as its promoting effect on FOXD1 mRNA. The overexpression of FOXD1 promotes DKK1 transcription by activating its promoter, thereby promoting glioma cell migration, invasion, and VM. Remarkably, the combined knockdown of UBA2, RALY, and FOXD1 resulted in the smallest tumor volumes and the longest survivals of nude mice in vivo. UBA2/RALY/FOXD1/DKK1 axis may play crucial roles in regulating VM in glioma, which may contribute to the development of potential strategies for the treatment of gliomas.
Funder
National Natural Science Foundation of China
Project of Key Laboratory of Neuro-oncology in Liaoning Province
2020 Shenyang Research and Development Special Project in Public Health
the high quality development project of China Medical University in 2022
Publisher
Springer Science and Business Media LLC
Subject
Health, Toxicology and Mutagenesis,Cell Biology,Toxicology
Cited by
3 articles.
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