| Literature DB >> 18182973 |
Abstract
The p53 pathway is aberrant in most human tumours with over 50% expressing mutant p53 proteins. The pathway is critically controlled by protein degradation. Here, we discuss the latest developments in the search for small molecules that can modulate p53 pathway protein stability and restore p53 activity for cancer therapy.Entities:
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Year: 2008 PMID: 18182973 PMCID: PMC2359710 DOI: 10.1038/sj.bjc.6604098
Source DB: PubMed Journal: Br J Cancer ISSN: 0007-0920 Impact factor: 7.640
Figure 1Small molecules that modulate p53 degradation and stability.
Enzymes that modulate p53 stability
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| Mdm2 | Ubc9 | HAUSP | YY1 |
| Cop1 | Ubc13 | (USP7) | LZAP |
| PIRH2 | UbcH5B/C | USP2a | Prolyl isomerase Pin1 |
| ARF-BP1 | Ribosomal proteins | ||
| WWP1 | L11, L23 | ||
| E6/E6-AP | |||
| TOPORS | |||
| CUL4 | |||
| p53RFP | |||
| STUB1 (CHIP) |
ARF-BP1=alternative reading frame-binding protein 1; CHIP=carboxy terminus of Hsp70-interacting protein; COP1=constitutively photomorphogenic 1; CUL4=cullin 4; HAUSP=herpesvirus-associated ubiquitin-specific protease; LZAP=leucine-zipper-containing ARF-binding protein; Mdm2=mouse double minute 2; PIRH2=p53-induced RING-H2 protein; p53RFP=p53-inducible RING-finger protein; STUB1=STIP1 homology and U-box containing protein 1; TOPORS=topoisomerase I-binding RS protein; Ubc=ubiquitin-conjugating enzyme; USP=ubiquitin-specific protease; YY1=Yin Yang 1.