Argentini M, Barboule N, Wasylyk B
Institut de Génétique et de Biologie Moléculaire et Cellulaire, CNRS/INSERM/ULP, 1 rue Laurent Fries, BP 163, 67404 Illkirch cédex, France.
Oncogene. 2001 Mar 15;20(11):1267-75. doi: 10.1038/sj.onc.1204241.
p53 and MDM2 are both degraded by the ubiquitin-proteasome pathway. MDM2 binds p53 and promotes its rapid degradation. MDM2 is an E3 ligase that activates self and p53 ubiquitylation. Moreover, MDM2 nuclear-cytoplasmic shuttling contributes to p53 degradation in the cytoplasm. We have identified a new region of MDM2 which regulates the stability of both p53 and MDM2. The first 50 amino-acids of the MDM2 acidic domain (222-272) contribute to MDM2 and MDM2-mediated p53 degradation by a mechanism which is independent of either MDM2 E3-ligase activity or MDM2 nucleo-cytoplasmic shuttling. The transcriptional coactivator p300 could have been involved, since it binds to the MDM2 acidic domain. However, we found that p300 stabilises MDM2, even in absence of an intact acidic domain, indicating that the MDM2 acidic region contributes to proteolysis independently of p300. We propose that the MDM2 acidic domain is required for unbiquitylated MDM2 and p53 to be degraded by cytoplasmic proteasomes.
p53和MDM2均通过泛素-蛋白酶体途径降解。MDM2与p53结合并促进其快速降解。MDM2是一种E3连接酶,可激活自身和p53的泛素化。此外,MDM2在细胞核与细胞质之间穿梭有助于p53在细胞质中降解。我们已经确定了MDM2的一个新区域,该区域调节p53和MDM2的稳定性。MDM2酸性结构域(222-272)的前50个氨基酸通过一种独立于MDM2 E3连接酶活性或MDM2在细胞核与细胞质之间穿梭的机制,促进MDM2以及MDM2介导的p53降解。转录共激活因子p300可能参与其中,因为它与MDM2酸性结构域结合。然而,我们发现即使在没有完整酸性结构域的情况下,p300也能使MDM2稳定,这表明MDM2酸性区域独立于p300参与蛋白水解。我们提出,MDM2酸性结构域是未泛素化的MDM2和p53被细胞质蛋白酶体降解所必需的。