de Graaf Petra, Little Natalie A, Ramos Yolande F M, Meulmeester Erik, Letteboer Stef J F, Jochemsen Aart G
Leiden University Medical Center, Department of Molecular and Cell Biology and Center for Biomedical Genetics, P. O. Box 9503, 2300 RA Leiden, The Netherlands.
J Biol Chem. 2003 Oct 3;278(40):38315-24. doi: 10.1074/jbc.M213034200. Epub 2003 Jul 21.
The stability of the p53 tumor suppressor protein is critically regulated by the Hdm2 and Hdmx proteins. Hdm2 protein levels are auto-regulated by the self-ubiquitination activity of Hdm2 and on the transcriptional level by p53-activated transcription of the hdm2 gene. Little is known about the regulation of Hdmx expression levels, apart from the observation that the Mdmx protein can be cleaved by caspase-3 in a p53-inducible manner. In the functional analysis of two mutant Hdmx proteins, products of two alternatively spliced mRNAs, it was found that Hdmx proteins are targets for ubiquitination by Mdm2. The stability of the Hdmx protein is partly dependent on the presence of its internal acidic domain. Mdm2 appears only to require an intact RING domain to be able to ubiquitinate Hdmx and target it for proteasomal degradation. These findings highlight the intricate functional relationships between p53, Mdm2, and Hdmx.
p53肿瘤抑制蛋白的稳定性受到Hdm2和Hdmx蛋白的严格调控。Hdm2蛋白水平通过Hdm2的自身泛素化活性以及p53激活的hdm2基因转录在转录水平上进行自我调节。除了观察到Mdmx蛋白可被p53诱导的caspase-3切割外,关于Hdmx表达水平的调控知之甚少。在对两种突变Hdmx蛋白(两种选择性剪接mRNA的产物)的功能分析中,发现Hdmx蛋白是Mdm2泛素化的靶标。Hdmx蛋白的稳定性部分取决于其内部酸性结构域的存在。Mdm2似乎仅需要完整的RING结构域就能使Hdmx泛素化并将其靶向蛋白酶体降解。这些发现突出了p53、Mdm2和Hdmx之间复杂的功能关系。