Guinea pig p53 mRNA: identification of new elements in coding and untranslated regions and their functional and evolutionary implications.
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Summary
This study represents the first detailed structural analysis of the UTRs of the p53 mRNAs available in literature, and demonstrates the significance of the PXXXXP motif in SH3-binding protein and suggested its structure to be a loop.
- Type
- article
- Published
- 1999-05-15
- Cited by
- 21
- References
- 64
- OpenAlex
- https://openalex.org/W2019107363
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27739703
Keywords
Polyadenylation, Biology, Untranslated region, Three prime untranslated region, Coding region
References
- Translational regulation of human p53 gene expression.
- Molecular Evolutionary Genetics
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- CPEB controls the cytoplasmic polyadenylation of cyclin, Cdk2 and c‐mos mRNAs and is necessary for oocyte maturation in Xenopus.
- Analysis of the gene coding for the murine cellular tumour antigen p53.
- The 5′ region of the p53 gene: evolutionary conservation and evidence for a negative regulatory element.
- Influence of base composition on quantitative estimates of gene evolution.
- Nuclear and nucleolar targeting sequences of c-erb-A, c-myb, N-myc, p53, HSP70, and HIV tat proteins.
- Isolation and characterization of a human p53 cDNA clone: expression of the human p53 gene.
- Role of a p53 polymorphism in the development of human papilloma-virus-associated cancer
- Phosphorylation of the tumor suppressor protein p53 by mitogen-activated protein kinases.
- Characterization of the human p53 gene promoter
- Nuclear accumulation of p53 protein is mediated by several nuclear localization signals and plays a role in tumorigenesis
- The structure and function of proline-rich regions in proteins.
- Expression of p53 during mouse embryogenesis.
- Structure of the MDM2 Oncoprotein Bound to the p53 Tumor Suppressor Transactivation Domain
- p53; from inductive signal to cellular effect.
- Life and death in the cytoplasm: messages from the 3' end.
- Monoallelically expressed gene related to p53 at 1p36, a region frequently deleted in neuroblastoma and other human cancers.
- Translational controls impinging on the 5'-untranslated region and initiation factor proteins.
Cited by
- Identification of a New Form of AQP4 mRNA That Is Developmentally Expressed in Mouse Brain
- Involvement of hGLD‐2 in cytoplasmic polyadenylation of human p53 mRNA
- Identification of a novel isoform of iASPP and its interaction with p53.
- An ultrasensitive photoelectrochemical nucleic acid biosensor
- p63/73 homologues in surf clam: novel signaling motifs and implications for control of expression.
- TP53 codon 72 polymorphism in 12 populations of insular Southeast Asia and Oceania
- An ultrasensitive nucleic acid biosensor based on the catalytic oxidation of guanine by a novel redox threading intercalator.
- A Combination of Genetic Suppressor Elements Produces Resistance to Drugs Inhibiting DNA Replication
- Structural and functional characterization of the mouse Hlx homeobox gene
- Conserved CPEs in the p53 3' untranslated region influence mRNA stability and protein synthesis.
- Mouse Mutants Reveal that Putative Protein Interaction Sites in the p53 Proline-Rich Domain Are Dispensable for Tumor Suppression
- iASPP preferentially binds p53 proline-rich region and modulates apoptotic function of codon 72–polymorphic p53
- Evolutionary history of the most speciose mammals: molecular phylogeny of muroid rodents.
- Differential transcription-coupled translational inhibition of human p53 expression: a potentially important mechanism of regulating p53 expression in normal versus tumor tissue.
- The rapid destabilization of p53 mRNA in immortal chicken embryo fibroblast cells
- Molecular characterization of p53 mutations in primary and secondary liver tumors
- Translational Control in p53 Expression: The Role of 5′-Terminal Region of p53 mRNA
- A p53/CPEB2 negative feedback loop regulates renal cancer cell proliferation and migration.
- CPEB4 Inhibit Cell Proliferation via Upregulating p21 mRNA Stability in Renal Cell Carcinoma
- Conserved CPEs in the P 53 3 ’ Untranslated Region Influence mRNA Stability and Protein Synthesis
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