A single trinucleotide, 5'AGC3'/5'GCT3', of the tripletrepeat disease genes confers metal ion-induced non-B DNA structure
- 1 January 1993
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 21 (24) , 5651-5655
- https://doi.org/10.1093/nar/21.24.5651
Abstract
Expansion of (AGC)n repeats has been associated with genetic disorders called triplet-repeat diseases such as Huntington's disease (HD), myotonic muscular dystrophy (DM) and Kennedy's disease. To gain insight into the abnormal behavior of these repeats, we studied their structural properties in supercoiled DNA. Chemical probing revealed that, under physiological salt and pH conditions, Zn2+ or Co2+ ions induce (AGC)n repeats to adopt a novel non-B DNA structure in which all cytosine but none of adenine residues in either strand become unpaired. The minimum size of (AGC)n repeat that could form this structure independently of neighboring sequences is a single unit of double-stranded trinucleotide, 5'AGC3'/5'GCT3'. Other trinucleotide units of the same nucleotide composition, 5'CAG3'/5'CTG3' or 5'GCA3'/5'TGC3', do not form non-B DNA structures. This unusual DNA structural properly adopted by a single 5'AGC3'/5'GCT3' trinucleotide may contribute to expansion of (AGC)n sequences in triplet-repeat diseases.Keywords
This publication has 22 references indexed in Scilit:
- Molecular basis of myotonic dystrophy: Expansion of a trinucleotide (CTG) repeat at the 3′ end of a transcript encoding a protein kinase family memberPublished by Elsevier ,1992
- Intramolecular dG · dG · dC triplex detected in Escherichia coli cellsJournal of Molecular Biology, 1992
- Cloning of the essential myotonic dystrophy region and mapping of the putative defectNature, 1992
- Detection of an unstable fragment of DNA specific to individuals with myotonic dystrophyNature, 1992
- Expansion of an unstable DNA region and phenotypic variation in myotonic dystrophyNature, 1992
- Altered gene expression correlates with DNA structure.Genes & Development, 1991
- Variation of the CGG repeat at the fragile X site results in genetic instability: Resolution of the Sherman paradoxCell, 1991
- Mapping of DNA Instability at the Fragile X to a Trinucleotide Repeat Sequence P(CCG) nScience, 1991
- Molecular cloning and analysis of the fragile X region in manNucleic Acids Research, 1991
- Paranemic Structures of DNA and their Role in DNA UnwindingCritical Reviews in Biochemistry and Molecular Biology, 1991