Thymine methyl groups stabilize the putative A-form of the synthetic DNA poly(amino2dA-dT)
Language English Country United States Media print
Document type Journal Article, Research Support, Non-U.S. Gov't
PubMed
8142382
DOI
10.1021/bi00179a003
Knihovny.cz E-resources
- MeSH
- Magnesium Chloride chemistry MeSH
- Circular Dichroism MeSH
- Ethanol chemistry MeSH
- Isomerism MeSH
- Nucleic Acid Conformation * MeSH
- Poly dA-dT chemistry MeSH
- Spectrophotometry, Ultraviolet MeSH
- Thymine chemistry MeSH
- Structure-Activity Relationship MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
- Names of Substances
- Magnesium Chloride MeSH
- Ethanol MeSH
- Poly dA-dT MeSH
- Thymine MeSH
Poly(amino2dA-dT) easily isomerizes into a non-B conformer which most authors think is an A-form. We synthesized new DNA analogs poly(amino2dA-ethyl5dU) and poly(amino2dA-dU) to show that they do not prefer this conformer. Hence the putative A-form is, like Z-DNA of poly(dG-dC) but unlike A-DNA, strongly stabilized by the methyl group in position 5 of the pyrimidine base. In addition, the putative A-form is induced by divalent cations while it does not need any alcohol to be stable, both properties being typical for Z-DNA again but quite unusual with A-DNA. Despite these similarities, the putative A-form is also distinct from Z-DNA, as poly(amino2dA-dT) is shown to isomerize into a Z-form in the NaCl + NiCl2 solvent system like poly(dA-dT). The present data indicate that the putative A-form of poly(amino2dA-dT) differs in a significant way from all canonical conformers of DNA. Furthermore, the studies of the poly(amino2dA-dT) family of polydeoxynucleotides reveal a novel type of conformational switch in DNA. We also report the B-Z transitions of poly(amino2dA-ethyl5dU) and poly(amino2dA-dU) and their transitions into the putative A-form in aqueous alcohol solutions.
References provided by Crossref.org
Conformational transitions of alternating purine-pyrimidine DNAs in perchlorate ethanol solutions