Author
Listed:
- Wen-juan Li
(Xiamen University
Xiamen University)
- Yao-hui He
(Xiamen University
Xiamen University)
- Jing-jing Yang
(Xiamen University
Xiamen University)
- Guo-sheng Hu
(Xiamen University
Xiamen University)
- Yi-an Lin
(Xiamen University
Xiamen University)
- Ting Ran
(Xiamen University
Xiamen University)
- Bing-ling Peng
(Xiamen University
Xiamen University)
- Bing-lan Xie
(Xiamen University
Xiamen University)
- Ming-feng Huang
(Xiamen University
Xiamen University)
- Xiang Gao
(Xiamen University)
- Hai-hua Huang
(Shantou University Medical College)
- Helen He Zhu
(Shanghai Jiao Tong University)
- Feng Ye
(The First Affiliated Hospital of Xiamen University)
- Wen Liu
(Xiamen University
Xiamen University
Xiamen University)
Abstract
Numerous substrates have been identified for Type I and II arginine methyltransferases (PRMTs). However, the full substrate spectrum of the only type III PRMT, PRMT7, and its connection to type I and II PRMT substrates remains unknown. Here, we use mass spectrometry to reveal features of PRMT7-regulated methylation. We find that PRMT7 predominantly methylates a glycine and arginine motif; multiple PRMT7-regulated arginine methylation sites are close to phosphorylations sites; methylation sites and proximal sequences are vulnerable to cancer mutations; and methylation is enriched in proteins associated with spliceosome and RNA-related pathways. We show that PRMT4/5/7-mediated arginine methylation regulates hnRNPA1 binding to RNA and several alternative splicing events. In breast, colorectal and prostate cancer cells, PRMT4/5/7 are upregulated and associated with high levels of hnRNPA1 arginine methylation and aberrant alternative splicing. Pharmacological inhibition of PRMT4/5/7 suppresses cancer cell growth and their co-inhibition shows synergistic effects, suggesting them as targets for cancer therapy.
Suggested Citation
Wen-juan Li & Yao-hui He & Jing-jing Yang & Guo-sheng Hu & Yi-an Lin & Ting Ran & Bing-ling Peng & Bing-lan Xie & Ming-feng Huang & Xiang Gao & Hai-hua Huang & Helen He Zhu & Feng Ye & Wen Liu, 2021.
"Profiling PRMT methylome reveals roles of hnRNPA1 arginine methylation in RNA splicing and cell growth,"
Nature Communications, Nature, vol. 12(1), pages 1-20, December.
Handle:
RePEc:nat:natcom:v:12:y:2021:i:1:d:10.1038_s41467-021-21963-1
DOI: 10.1038/s41467-021-21963-1
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