Sabbatini Peter, McCormick Frank
Research Institute, University of California, School of Medicine, San Francisco, California 94080, USA.
DNA Cell Biol. 2002 Jul;21(7):519-25. doi: 10.1089/104454902320219077.
The p300/CBP-mediated acetylation of p53 significantly potentiates p53-mediated transactivation and growth inhibition. MDM2 inhibits the acetylation of p53 by p300/CBP through a mechanism that requires a stable p53-MDM2 interaction and that is sensitive to the deacetylase inhibitor, TSA. MDMX is an MDM2-like protein that shares with MDM2 the ability to interact with p53 and, in turn, inhibit p53-mediated transcription. It was therefore of interest to determine if MDMX could also inhibit the acetylation of p53 by p300/CBP. We demonstrate that MDMX dramatically inhibits the acetylation of p53 induced by both endogenous and ectopically expressed p300/CBP. We also demonstrate that the p53-binding domain of MDMX is required for the MDMX-mediated inhibition of p53 acetylation. Our results indicate that MDMX shares with MDM2 the ability to regulate a potentially important post-translational modification of p53. These results may have important biologic implications with respect to the MDMX-mediated regulation of p53 activity during development.
p300/CBP介导的p53乙酰化显著增强p53介导的反式激活作用和生长抑制作用。MDM2通过一种需要稳定的p53-MDM2相互作用且对去乙酰化酶抑制剂TSA敏感的机制来抑制p300/CBP对p53的乙酰化作用。MDMX是一种类似MDM2的蛋白质,与MDM2一样具有与p53相互作用并进而抑制p53介导的转录的能力。因此,确定MDMX是否也能抑制p300/CBP对p53的乙酰化作用就显得很有意义。我们证明MDMX能显著抑制内源性和异位表达的p300/CBP所诱导的p53乙酰化。我们还证明MDMX介导的对p53乙酰化的抑制作用需要MDMX的p53结合结构域。我们的结果表明MDMX与MDM2一样具有调节p53一种潜在重要的翻译后修饰的能力。这些结果对于MDMX在发育过程中介导的p53活性调节可能具有重要的生物学意义。