Mdm2 and MdmX partner to regulate p53 Journal Article


Authors: Wang, X.; Jiang, X.
Article Title: Mdm2 and MdmX partner to regulate p53
Abstract: Mdm2 regulates the stability, translation, subcellular localization and transcriptional activity of p53 protein. Mdm2-dependent p53 inhibition is essential in regulating p53 activity during embryonic development and in adult tissues. MdmX, an Mdm2 homolog, is also essential for p53 inhibition in vivo. Recent advances in the field from biochemical and genetic studies have revealed an essential role for the MdmX RING domain in Mdm2-dependent p53 polyubiquitination and degradation. Mdm2 on its own is a monoubiquitin E3 ligase for p53, but is converted to a p53 polyubiquitin E3 ligase by MdmX through their RING-RING domain interactions. MdmX acts as an activator as well as a substrate of Mdm2/MdmX E3 complex. The insufficiency of Mdm2 for p53 polyubiquitination also demands other p53 E3 ligases or E4 factors be incorporated into the p53 degradation arena. Deubiquitinases nullify the effects of E3 actions and reverse the ubiquitination process, which permits a diverse and dynamic pattern of p53 stability control. Unsurprisingly, stress signals target MdmX to disengage the p53/Mdm2 feedback loop for timely and appropriate p53 responses to these stresses. © 2012 Federation of European Biochemical Societies. Published by Elsevier B.V. All rights reserved.
Keywords: signal transduction; review; nonhuman; molecular genetics; protein domain; protein function; protein analysis; complex formation; protein degradation; protein protein interaction; protein stability; embryo development; protein p53; protein mdmx; regulatory mechanism; ubiquitination; cellular distribution; stress; regulation; feedback system; ubiquitin protein ligase e3; biochemistry; p53; protein mdm2; protein synthesis inhibition; mdm2; e3 ligase; degradation; mdm4; translation regulation; polyubiquitination; ring finger protein; mdmx; stress response
Journal Title: FEBS Letters
Volume: 586
Issue: 10
ISSN: 0014-5793
Publisher: Wiley Blackwell  
Date Published: 2012-05-21
Start Page: 1390
End Page: 1396
Language: English
DOI: 10.1016/j.febslet.2012.02.049
PROVIDER: scopus
PUBMED: 22673503
DOI/URL:
Notes: --- - "Cited By (since 1996): 1" - "Export Date: 4 June 2012" - "CODEN: FEBLA" - "Source: Scopus"
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  1. Xuejun Jiang
    121 Jiang