Hairpins are formed by the single DNA strands of the fragile X triplet repeats: structure and biological implications.
- 23 May 1995
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 92 (11), 5199-5203
- https://doi.org/10.1073/pnas.92.11.5199
Abstract
Inordinate expansion and hypermethylation of the fragile X DNA triplet repeat, (GGC)n.(GCC)n, are correlated with the ability of the individual G- and C-rich single strands to form hairpin structures. Two-dimensional NMR and gel electrophoresis studies show that both the G- and C-rich single strands form hairpins under physiological conditions. This propensity of hairpin formation is more pronounced for the C-rich strand than for the G-rich strand. This observation suggests that the C-rich strand is more likely to form hairpin or "slippage" structure and show asymmetric strand expansion during replication. NMR data also show that the hairpins formed by the C-rich strands fold in such a way that the cytosine at the CpG step of the stem is C.C paired. The presence of a C.C mismatch at the CpG site generates local flexibility, thereby providing analogs of the transition to the methyltransferase. In other words, the hairpins of the C-rich strand act as better substrates for the human methyltransferase than the Watson-Crick duplex or the G-rich strand. Therefore, hairpin formation could account for the specific methylation of the CpG island in the fragile X repeat that occurs during inactivation of the FMR1 gene during the onset of the disease.Keywords
This publication has 16 references indexed in Scilit:
- Sampling of the conformations of the d(CGCTGCGGC) hairpin in solution by two-dimensional nuclear magnetic resonance and theoretical methodsBiochemistry, 1993
- DNA structure, mutations, and human genetic diseaseCurrent Opinion in Biotechnology, 1992
- Mechanism of human methyl-directed DNA methyltransferase and the fidelity of cytosine methylation.Proceedings of the National Academy of Sciences, 1992
- Highly conserved repetitive DNA sequences are present at human centromeres.Proceedings of the National Academy of Sciences, 1992
- Recognition of unusual DNA structures by human DNA(cytosine-5)methyltransferaseJournal of Molecular Biology, 1991
- The distribution of interspersed repetitive DNA sequences in the human genomeGenomics, 1989
- 5-Fluorocytosine in DNA is a mechanism-based inhibitor of HhaI methylaseBiochemistry, 1988
- Human DNA (cytosme-5)methyftransferase selectively methylates duplex DNA containing mispairsNucleic Acids Research, 1987
- Partial purification of an enzyme from Saccharomyces cerevisiae that cleaves Holliday junctions.Proceedings of the National Academy of Sciences, 1985
- X inactivation, differentiation, and DNA methylationCytogenetic and Genome Research, 1975