泛素
平方毫米
调节器
细胞生物学
平衡
抑制器
细胞生长
赖氨酸
功能(生物学)
癌症研究
蛋白酶体
细胞
生物
化学
癌症
细胞凋亡
生物化学
遗传学
氨基酸
基因
作者
Jiang Liu,Di Guan,Maogong Dong,Jing‐Jing Yang,Haibin Wei,Qian Liang,Lizhi Song,Lu Xu,Junjie Bai,Cui Liu,Jian Mao,Qian Zhang,Junzhi Zhou,Xiaoying Wu,Miao Wang,Yu‐Sheng Cong
标识
DOI:10.1038/s41556-020-0559-z
摘要
p53 is the most intensively studied tumour suppressor1. The regulation of p53 homeostasis is essential for its tumour-suppressive function2,3. Although p53 is regulated by an array of post-translational modifications, both during normal homeostasis and in stress-induced responses2-4, how p53 maintains its homeostasis remains unclear. UFMylation is a recently identified ubiquitin-like modification with essential biological functions5-7. Deficiency in this modification leads to embryonic lethality in mice and disease in humans8-12. Here, we report that p53 can be covalently modified by UFM1 and that this modification stabilizes p53 by antagonizing its ubiquitination and proteasome degradation. Mechanistically, UFL1, the UFM1 ligase6, competes with MDM2 to bind to p53 for its stabilization. Depletion of UFL1 or DDRGK1, the critical regulator of UFMylation6,13, decreases p53 stability and in turn promotes cell growth and tumour formation in vivo. Clinically, UFL1 and DDRGK1 expression are downregulated and positively correlated with levels of p53 in a high percentage of renal cell carcinomas. Our results identify UFMylation as a crucial post-translational modification for maintenance of p53 stability and tumour-suppressive function, and point to UFMylation as a promising therapeutic target in cancer.
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