Back to Search Start Over

Targeting PUS7 suppresses tRNA pseudouridylation and glioblastoma tumorigenesis

Authors :
Behnam Badie
Chuan He
Mingzi Zhang
Qi Cui
Jeremy Klein
Peng Ye
Yanhong Shi
Haowei Meng
Xiaoting Zhang
Kailin Yin
Jianfei Chao
Guihua Sun
Yue Qin
Marvin Huynhle
Jiangbo Wei
Chengqi Yi
Markus Kalkum
Daniel Roeth
Li Li
Cheng Wang
Xianwei Chen
Leying Zhang
Source :
Nature Cancer. 2:932-949
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

Pseudouridine is the most frequent epitranscriptomic modification. However, its cellular functions remain largely unknown. Here, we show that pseudouridine synthase 7 (PUS7) is highly expressed in glioblastoma versus normal brain tissues, and high PUS7 expression levels are associated with worse survival in patients with glioblastoma. PUS7 expression and catalytic activity are required for glioblastoma stem cell (GSC) tumorigenesis. Mechanistically, we identify PUS7 targets in GSCs through small RNA pseudouridine sequencing and show that pseudouridylation of PUS7-regulated transfer RNA is critical for codon-specific translational control of key regulators of GSCs. Moreover, we identify chemical inhibitors for PUS7 and show that these compounds prevent PUS7-mediated pseudouridine modification, suppress tumorigenesis and extend the life span of tumor-bearing mice. Overall, we identify an epitranscriptomic regulatory mechanism in glioblastoma and provide preclinical evidence of a potential therapeutic strategy for glioblastoma. Shi and colleagues show that PUS7 controls tRNA pseudouridylation and codon-specific translation to fuel glioblastoma tumorigenesis, and discover a PUS7 inhibitor that delays tumor growth in glioblastoma models.

Details

ISSN :
26621347
Volume :
2
Database :
OpenAIRE
Journal :
Nature Cancer
Accession number :
edsair.doi...........7176de14d45ab9ee0e7f348580134f93
Full Text :
https://doi.org/10.1038/s43018-021-00238-0