Life and death by P53
- 1 November 1995
- Vol. 17 (11) , 923-930
- https://doi.org/10.1002/bies.950171105
Abstract
P53 is a multifunctional protein which plays a role in modulating gene transcription, policing cell cycle checkpoints, activating apoptosis, controlling DNA replication and repair, maintaining genomic stability and responding to genetic insults. Mutation of the p53 gene confers the single greatest known selective advantage favoring cancer formation. Point mutations result not only in the loss of tumor suppressor functions, but also in the gain of tumor promotion functions. These dual circumstances may be unique to p53 and, in part, could explain the relatively powerful force behind this selection pressure. General mechanisms of gain of function by mutated p53 may include alteration in transcriptional modulation and newly acquired targets for transcriptional regulation and protein binding. Despite the direct significance of p53 mutations, loss of the remaining wild‐type allele is usually required for the formation of tumors in the natural setting. Novel applications of the basic scientific knowledge of p53 could lead to an improvement in cancer treatment, hopefully in the not so distant future.Keywords
This publication has 66 references indexed in Scilit:
- A mutant p53 transgene accelerates tumour development in heterozygous but not nullizygous p53–deficient miceNature Genetics, 1995
- p53 Status and the Efficacy of Cancer Therapy in VivoScience, 1994
- High-Resolution Structure of the Oligomerization Domain of p53 by Multidimensional NMRScience, 1994
- Crystal Structure of a p53 Tumor Suppressor-DNA Complex: Understanding Tumorigenic MutationsScience, 1994
- Inhibition of DNA replication factor RPA by p53Nature, 1993
- Oncoprotein MDM2 conceals the activation domain of tumour suppressor p53Nature, 1993
- Effects of exogenous wild-type p53 on a human lung carcinoma cell line with endogenous wild-type p53Experimental Cell Research, 1992
- Different Tumor-Derived p53 Mutants Exhibit Distinct Biological ActivitiesScience, 1990
- The murine p53 protein blocks replication of SV40 DNA in vitro by inhibiting the initiation functions of SV40 large T antigenCell, 1989
- p53 and DNA polymerase α compete for binding to SV40 T antigenNature, 1987