Rho family GTPase 1 (RND1), a novel regulator of p53, enhances ferroptosis in glioblastoma

Background: Ferroptosis is an iron dependent cell death closely associated with p53 signaling pathway and is aberrantly regulated in glioblastoma (GBM), yet the underlying mechanism needs more exploration. Identifying new factors which regulate p53 and ferroptosis in GBM is essential for treatment....

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Bibliographic Details
Main Authors: Chen, Q. (Author), Liu, B. (Author), Qi, Y. (Author), Sun, Q. (Author), Wang, Y. (Author), Xu, Y. (Author), Yuan, F. (Author)
Format: Article
Language:English
Published: BioMed Central Ltd 2022
Subjects:
GBM
p53
Online Access:View Fulltext in Publisher
LEADER 02573nam a2200253Ia 4500
001 10.1186-s13578-022-00791-w
008 220706s2022 CNT 000 0 und d
020 |a 20453701 (ISSN) 
245 1 0 |a Rho family GTPase 1 (RND1), a novel regulator of p53, enhances ferroptosis in glioblastoma 
260 0 |b BioMed Central Ltd  |c 2022 
856 |z View Fulltext in Publisher  |u https://doi.org/10.1186/s13578-022-00791-w 
520 3 |a Background: Ferroptosis is an iron dependent cell death closely associated with p53 signaling pathway and is aberrantly regulated in glioblastoma (GBM), yet the underlying mechanism needs more exploration. Identifying new factors which regulate p53 and ferroptosis in GBM is essential for treatment. Methods: Glioma cell growth was evaluated by cell viability assays and colony formation assays. Lipid reactive oxygen species (ROS) assays, lipid peroxidation assays, glutathione assays, and transmission electron microscopy were used to assess the degree of cellular lipid peroxidation of GBM. The mechanisms of RND1 in regulation of p53 signaling were analyzed by RT-PCR, western blot, immunostaining, co-immunoprecipitation, ubiquitination assays and luciferase reporter assays. The GBM‐xenografted animal model was constructed and the tumor was captured by an In Vivo Imaging System (IVIS). Results: From the The Cancer Genome Atlas (TCGA) database, we summarized that Rho family GTPase 1 (RND1) expression was downregulated in GBM and predicted a better prognosis of patients with GBM. We observed that RND1 influenced the glioma cell growth in a ferroptosis-dependent manner when GBM cell lines U87 and A172 were treated with Ferrostatin-1 or Erastin. Mechanistically, we found that RND1 interacted with p53 and led to the de-ubiquitination of p53 protein. Furthermore, the overexpression of RND1 promoted the activity of p53-SLC7A11 signaling pathway, therefore inducing the lipid peroxidation and ferroptosis of GBM. Conclusions: We found that RND1, a novel controller of p53 protein and a positive regulator of p53 signaling pathway, enhanced the ferroptosis in GBM. This study may shed light on the understanding of ferroptosis in GBM cells and provide new therapeutic ideas for GBM. © 2022, The Author(s). 
650 0 4 |a Ferroptosis 
650 0 4 |a GBM 
650 0 4 |a p53 
650 0 4 |a RND1 
700 1 0 |a Chen, Q.  |e author 
700 1 0 |a Liu, B.  |e author 
700 1 0 |a Qi, Y.  |e author 
700 1 0 |a Sun, Q.  |e author 
700 1 0 |a Wang, Y.  |e author 
700 1 0 |a Xu, Y.  |e author 
700 1 0 |a Yuan, F.  |e author 
773 |t Cell and Bioscience