Elias Bertha, Laine Aaron, Ronai Ze'ev
Department of Oncological Sciences, Cancer Center, Mount Sinai School of Medicine, One Gustive L. Levy Place, Box 1130, New York, NY 10029, USA.
Oncogene. 2005 Apr 7;24(15):2574-9. doi: 10.1038/sj.onc.1208488.
Mdm2 and MdmX function as cellular regulators of the p53 tumor suppressor protein. Intriguingly, the activities of these proteins are interdependent; MdmX stabilizes Mdm2, enabling its activities towards p53, but it also requires Mdm2 for its nuclear localization. Here we demonstrate that via its phosphorylation by CDK2/Cdc2p34, MdmX regulates nuclear export of Mdm2. Cdc2p34 phosphorylates MdmX on Ser 96 in vitro. Mutation within this site (MdmX(S96A)) impairs, whereas phosphomimic substitution (MdmX(S96D)) increases the cytoplasmic localization of MdmX, suggesting that CDK2/Cdc2p34 phosphorylation is required for export of MdmX from the nucleus. Consequently, cells that express MdmX(S96A) retain Mdm2 in their nuclei, suggesting that export of Mdm2 to the cytoplasm is MdmX-dependent. Similarly, treatment of cells with the pharmacological inhibitor of CDK2/Cdc2p34 or with a dominant-negative Cdc2 results in nuclear localization of MdmX and Mdm2 and decreases the level of Mdm2 expression. Since Cdc2p34 is active in nonstressed conditions, our finding provides a novel insight into the signaling cascade involved in the regulation of MdmX localization and for regulation of Mdm2 localization and stability.
Mdm2和MdmX作为p53肿瘤抑制蛋白的细胞调节因子发挥作用。有趣的是,这些蛋白的活性相互依赖;MdmX使Mdm2稳定,使其能够对p53发挥作用,但它的核定位也需要Mdm2。在这里,我们证明MdmX通过被CDK2/Cdc2p34磷酸化来调节Mdm2的核输出。Cdc2p34在体外使MdmX的Ser 96位点磷酸化。该位点的突变(MdmX(S96A))会损害MdmX的功能,而模拟磷酸化的替代(MdmX(S96D))会增加MdmX的细胞质定位,这表明CDK2/Cdc2p34磷酸化是MdmX从细胞核输出所必需的。因此,表达MdmX(S96A)的细胞会将Mdm2保留在细胞核中,这表明Mdm2向细胞质的输出依赖于MdmX。同样,用CDK2/Cdc2p34的药理抑制剂或显性负性Cdc2处理细胞会导致MdmX和Mdm2的核定位,并降低Mdm2的表达水平。由于Cdc2p34在非应激条件下具有活性,我们的发现为参与调节MdmX定位以及Mdm2定位和稳定性的信号级联提供了新的见解。