p53 binds human telomeric G-quadruplex in vitro
Language English Country France Media print-electronic
Document type Journal Article
PubMed
27422117
DOI
10.1016/j.biochi.2016.07.004
PII: S0300-9084(16)30133-X
Knihovny.cz E-resources
- Keywords
- DNA-protein interaction, G-quadruplex, Telomere DNA, p53 protein,
- MeSH
- Circular Dichroism MeSH
- DNA chemistry genetics metabolism MeSH
- Potassium chemistry MeSH
- Enzyme-Linked Immunosorbent Assay MeSH
- G-Quadruplexes * MeSH
- Binding, Competitive MeSH
- Humans MeSH
- Mesoporphyrins chemistry MeSH
- Mutation MeSH
- Tumor Suppressor Protein p53 chemistry genetics metabolism MeSH
- Oligonucleotides chemistry genetics metabolism MeSH
- Electrophoretic Mobility Shift Assay MeSH
- Base Sequence MeSH
- Tandem Repeat Sequences genetics MeSH
- Telomere chemistry genetics metabolism MeSH
- Protein Binding MeSH
- Binding Sites genetics MeSH
- Check Tag
- Humans MeSH
- Publication type
- Journal Article MeSH
- Names of Substances
- DNA MeSH
- Potassium MeSH
- Mesoporphyrins MeSH
- N-methylmesoporphyrin IX MeSH Browser
- Tumor Suppressor Protein p53 MeSH
- Oligonucleotides MeSH
The tumor suppressor protein p53 is a key factor in genome stability and one of the most studied of DNA binding proteins. This is the first study on the interaction of wild-type p53 with guanine quadruplexes formed by the human telomere sequence. Using electromobility shift assay and ELISA, we show that p53 binding to telomeric G-quadruplexes increases with the number of telomeric repeats. Further, p53 strongly favors G-quadruplexes folded in potassium over those formed in sodium, thus indicating the telomeric G-quadruplex conformational selectivity of p53. The presence of the quadruplex-stabilizing ligand, N-methyl mesoporphyrin IX (NMM), increases p53 recognition of G-quadruplexes in potassium. Using deletion mutants and selective p53 core domain oxidation, both p53 DNA binding domains are shown to be crucial for telomeric G-quadruplex recognition.
References provided by Crossref.org
The Rich World of p53 DNA Binding Targets: The Role of DNA Structure
Recognition of Local DNA Structures by p53 Protein