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◆ Experimental cell research2026-09-23

Phosphorylation destabilizes Per3 to promote gallbladder carcinoma.

Kun Fan, Xi Cheng, Chunyan Wang, Yanlei Xin, Sheng Shen, Jiwen Wang, Xiaojian Ni, Bohao Zheng, Han Liu, Tao Suo, Xiaoling Ni, Shuijun Li, Shulong Zhang, Houbao Liu

原始摘要(英文原文)· Original abstract
Irregular circadian rhythm drives tumor malignant progression by governing a range of cellular processes, but its roles in gallbladder carcinoma (GBC) remain unclear. As a potential tumor suppressor gene, Per3 was down-regulated in GBC with a poor prognosis. Overexpression of Per3 inhibited GBC growth and metastasis in vitro and in vivo. Mechanistically, Per3 combined with P4HA1 to promote degradation of HIF-1α protein, consequently, HIF-1α-targeted genes were transcriptionally down-regulated to inhibit glycolytic capacity. Meanwhile, the key inducers of epithelial-mesenchymal transition (EMT), TGFB1 and TGFBI were transcriptionally repressed by Per3 combining at the promoters, subsequently reducing the mRNA levels of EMT-related genes and blocking EMT progression. The decrease of Per3 was determined at protein post-translational modification (PTM), not at transcription. Mass spectrometry identified that CKII, not CKI or other kinases, phosphorylated Per3 at S1048, which promoted ubiquitination-dependent degradation of Per3, leading to loss of its tumor-suppressive function. Collectively, these results reveal the mechanisms of Per3 S1048 phosphorylation-driven degradation and the roles of Per3 in regulating HIF-1α/glycolysis and TGF-β/EMT in gallbladder carcinoma.
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Phosphorylation destabilizes Per3 to promote gallbladder carcinoma. — 科研速览 Science Skim