未折叠蛋白反应
内质网
ATF6
泛素连接酶
抑制器
癌变
细胞生物学
生物
癌症研究
癌基因
泛素
癌症
遗传学
细胞周期
基因
作者
Weichao Dan,Yizeng Fan,Yuzhao Wang,Tao Hou,Yi Wei,Bo Liu,Mengxing Li,Jiaqi Chen,Qixiang Fang,Taotao Que,Yuzeshi Lei,Chenguang Guo,Li Wang,Yang Gao,Jin Zeng,Lei Li
标识
DOI:10.1002/advs.202405441
摘要
Abstract Aberrant regulation of unfolded protein response (UPR)/endoplasmic reticulum (ER) stress pathway is associated with cancer development, metastasis, and relapse, and the UPR signal transducer ATF6 has been proposed as a diagnostic and prognostic marker for many cancers. However, a causal molecular link between ATF6 activation and carcinogenesis is not established. Here, it is found that tumor protein D52 (TPD52) integrates ER stress and UPR signaling with the chaperone machinery by promoting S2P‐mediated cleavage of ATF6. Although TPD52 has been generally considered as an oncogene, TPD52 is identified as a novel tumor suppressor in bladder cancer. Significantly, attenuation of the ER stress via depletion of TPD52 facilitated tumorigenesis in a subset of human carcinomas. Furthermore, the APC Cdc20 E3 ligase is validated as the upstream regulator marking TPD52 for polyubiquitination‐mediated proteolysis. In addition, inactivation of Cdc20 sensitized cancer cells to treatment with the ER stress inducer in a TPD52‐dependent manner. Thus, the study suggests that TPD52 is a novel Cdc20 substrate that may modulate ER stress to prevent tumorigenesis.
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