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Open AccessJournal ArticleDOI

The multiple levels of regulation by p53 ubiquitination.

James T. Lee, +1 more
- 01 Jan 2010 - 
- Vol. 17, Iss: 1, pp 86-92
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TLDR
Although the essential role of MDM2 in p53 regulation is well established, there are an increasing number of other E3 ligases implicated in Mdm2-independent regulation of p53 by ubiquitination, linked to its differential effects on p53-mediated stress responses.
Abstract
p53 is a central integrator of a plethora of signals and outputs these signals in the form of tumor suppression. It is well accepted that ubiquitination plays a major part in p53 regulation. Nonetheless, the molecular mechanisms by which p53 activity is controlled by ubiquitination are complex. Mdm2, a RING oncoprotein, was once thought to be the sole E3 ubiquitin ligase for p53, however recent studies have shown that p53 is stabilized but still degraded in the cells of Mdm2-null mice. Although the essential role of Mdm2 in p53 regulation is well established, there are an increasing number of other E3 ligases implicated in Mdm2-independent regulation of p53 by ubiquitination. The different types of ubiquitination on p53 by various E3 ligases have been linked to its differential effects on p53-mediated stress responses. In addition to proteasome-mediated degradation, ubiquitination of p53 acts as signals for degradation-independent functions, such as nuclear export. The function of ubiquitinated p53 varies in the nucleus and cytosol underlying the many potential contributions ubiquitinated p53 may have in promoting cell proliferation or death. Thus, p53 requires multiple layers of regulatory control to ensure correct temporal and spatial functions.

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Journal ArticleDOI

The Nucleolus under Stress

TL;DR: Nucleolar function in the stress-induced regulation of p53 and the specific changes in nucleolar morphology and composition that occur upon stress are reviewed.
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HECT and RING finger families of E3 ubiquitin ligases at a glance

TL;DR: The post-translational attachment of ubiquitin, a highly conserved 76-amino-acid polypeptide, directs myriad eukaryotic proteins to a variety of fates and functions.
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p53 post-translational modification: deregulated in tumorigenesis

TL;DR: The recent advances in understanding of the wide spectrum of post-translational modifications that act as epigenetic-like codes for modulating specific functions of p53 in vivo are reviewed and how deregulation of these modifications might contribute to tumorigenesis are reviewed.
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The p53 orchestra: Mdm2 and Mdmx set the tone

TL;DR: Roles for Mdm2 and Mdmx in additional cancer-related networks are considered, including Notch signaling and the epithelial-to-mesenchymal transition.
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Ubiquitylation in apoptosis: a post-translational modification at the edge of life and death

TL;DR: Therapeutic agents that target apoptotic regulatory proteins, including those that are part of the ubiquitin–proteasome system, might afford clinical benefits.
References
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Journal ArticleDOI

Mdm2 promotes the rapid degradation of p53

TL;DR: It is proposed that the Mdm2-promoted degradation of p53 provides a new mechanism to ensure effective termination of the p53 signal.
Journal ArticleDOI

Regulation of p53 stability by Mdm2

TL;DR: It is shown that interaction with Mdm2 can also result in a large reduction in p53 protein levels through enhanced proteasome-dependent degradation, which may contribute to the maintenance of low p53 concentrations in normal cells.
Journal ArticleDOI

The HPV-16 E6 and E6-AP complex functions as a ubiquitin-protein ligase in the ubiquitination of p53

TL;DR: The purification and identification of the factors necessary for the E6-E6-AP-mediated ubiquitination of p53 are reported, and E 6-AP appears to have ubiquitin-protein ligase activity in the absence of E6.
Journal ArticleDOI

Direct activation of Bax by p53 mediates mitochondrial membrane permeabilization and apoptosis.

TL;DR: It is proposed that when p53 accumulates in the cytosol, it can function analogously to the BH3-only subset of proapoptotic Bcl-2proteins to activate Bax and trigger apoptosis.
Journal ArticleDOI

Oncoprotein MDM2 is a ubiquitin ligase E3 for tumor suppressor p53

TL;DR: The data suggest that the MDM2 protein, which is induced by p53, functions as a ubiquitin ligase, E3, in human papillomavirus‐uninfected cells which do not have E6 protein.
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