泛素连接酶
脱磷
磷酸化
细胞生物学
泛素
转录因子
磷酸酶
化学
降级(电信)
蛋白酶体
DNA连接酶
蛋白磷酸酶2
血浆蛋白结合
抄写(语言学)
DNA结合蛋白
生物化学
生物
信号转导
蛋白质降解
HEK 293细胞
泛素蛋白连接酶类
机制(生物学)
激酶
抑制器
蛋白质-蛋白质相互作用
蛋白质磷酸化
免疫沉淀
作者
Sana Ando,Shunta Ikeda,Keiko Tanaka,Yuri Tomabechi,Atsushi Yamagata,Mikako Shirouzu,Ryouichi Tsunedomi,Hiroaki Nagano,Shunya Tsuji,Koichi Sato,Takashi Ohama
标识
DOI:10.1073/pnas.2509374123
摘要
The transcription factor c-Myc is a master oncoprotein that regulates over 15% of all genes. Protein phosphatase 2A (PP2A), a crucial tumor suppressor, destabilizes c-Myc protein. Classically, PP2A-mediated dephosphorylation of Ser62 followed by Thr58 phosphorylation was thought to promote ubiquitination of c-Myc by the E3 ligase F-box and WD repeat domain containing 7 (FBXW7). However, recent evidence indicates that FBXW7 preferentially recognizes c-Myc when both Thr58 and Ser62 are phosphorylated, leaving the mechanism underlying PP2A-induced c-Myc degradation unsolved. Here, we demonstrate that the PP2A-B55α complex, which directly dephosphorylates c-Myc at Thr58, regulates two distinct degradation pathways in a biphasic manner: B55α suppression increases Thr58 phosphorylation and enhances FBXW7-dependent degradation, whereas B55α overexpression promotes Thr58-independent, ubiquitin-protein ligase E3 component N-recognin 5 (UBR5)-mediated degradation. We further show that the PP2A-B55α complex binds and dephosphorylates UBR5. In contrast, B55δ, which belongs to the same B55 family and shares a common core structure, exhibits weaker UBR5 binding affinity and fails to induce c-Myc degradation. Our findings identify PP2A-B55α as a context-dependent molecular switch for c-Myc degradation and provide a unified framework that resolves the paradox linking PP2A activation to c-Myc destabilization.
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