Identification of p53 Sequence Elements That Are Required for MDM2-Mediated Nuclear Export
Open Access
- 1 December 2001
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 21 (24), 8657-8670
- https://doi.org/10.1128/mcb.21.24.8533-8546.2001
Abstract
Here we investigated ribosomal pausing at sites of programmed −1 ribosomal frameshifting, using translational elongation and ribosome heelprint assays. The site of pausing at the frameshift signal of infectious bronchitis virus (IBV) was determined and was consistent with an RNA pseudoknot-induced pause that placed the ribosomal P- and A-sites over the slippery sequence. Similarly, pausing at the simian retrovirus 1 gag/pol signal, which contains a different kind of frameshifter pseudoknot, also placed the ribosome over the slippery sequence, supporting a role for pausing in frameshifting. However, a simple correlation between pausing and frameshifting was lacking. Firstly, a stem-loop structure closely related to the IBV pseudoknot, although unable to stimulate efficient frameshifting, paused ribosomes to a similar extent and at the same place on the mRNA as a parental pseudoknot. Secondly, an identical pausing pattern was induced by two pseudoknots differing only by a single loop 2 nucleotide yet with different functionalities in frameshifting. The final observation arose from an assessment of the impact of reading phase on pausing. Given that ribosomes advance in triplet fashion, we tested whether the reading frame in which ribosomes encounter an RNA structure (the reading phase) would influence pausing. We found that the reading phase did influence pausing but unexpectedly, the mRNA with the pseudoknot in the phase which gave the least pausing was found to promote frameshifting more efficiently than the other variants. Overall, these experiments support the view that pausing alone is insufficient to mediate frameshifting and additional events are required. The phase dependence of pausing may be indicative of an activity in the ribosome that requires an optimal contact with mRNA secondary structures for efficient unwinding.Keywords
This publication has 22 references indexed in Scilit:
- C-Terminal Ubiquitination of p53 Contributes to Nuclear ExportMolecular and Cellular Biology, 2001
- Subcellular distribution of p53 and p73 are differentially regulated by MDM2.2001
- The contribution of the acidic domain of MDM2 to p53 and MDM2 stabilityOncogene, 2001
- Multiple Lysine Mutations in the C-Terminal Domain of p53 Interfere with MDM2-Dependent Protein Degradation and UbiquitinationMolecular and Cellular Biology, 2000
- Multiple C-Terminal Lysine Residues Target p53 for Ubiquitin-Proteasome-Mediated DegradationMolecular and Cellular Biology, 2000
- An intact HDM2 RING-finger domain is required for nuclear exclusion of p53Nature Cell Biology, 2000
- The MDM2 RING-finger domain is required to promote p53 nuclear exportNature Cell Biology, 2000
- Regulation and function of the p53-related proteins: same family, different rulesTrends in Cell Biology, 2000
- Regulation of p53 stabilityOncogene, 1999
- The nuclear import of p53 is determined by the presence of a basic domain and its relative position to the nuclear localization signalOncogene, 1999