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The Journal of Biological Chemistry|August 5, 2004
Hairpin structure-forming propensity of the (CCTG.CAGG) tetranucleotide repeats contributes to the genetic instability associated with myotonic dystrophy type 2Ruhee Dere, Marek Napierala, Laura P W Ranum, et al.Journal of Developmental and Behavioral Pediatrics : JDBP|April 24, 2010
Scott: an 11-year-old boy with repetitive lyingRobert D Wells, Bryan Bruns, Esther H Wender, et al.DNA Repair|June 30, 2006
The involvement of non-B DNA structures in gross chromosomal rearrangementsAlbino Bacolla, Marzena Wojciechowska, Beata Kosmider, et al.Nucleic Acids Research. Supplement (2001)|August 9, 2003
Effects of triplet repeat sequences on nucleosome positioning and gene expression in yeast minichromosomesNobuyuki Tomita, Ryo Fujita, Daichi Kurihara, et al.Biofactors (Oxford, England)|December 13, 2012
Expanded complexity of unstable repeat diseasesUrszula Polak, Elizabeth McIvor, Sharon Y R Dent, et al.Nucleic Acids Research|July 12, 2005
Advances in mechanisms of genetic instability related to hereditary neurological diseasesRobert D Wells, Ruhee Dere, Micheal L Hebert, et al.Proceedings of the National Academy of Sciences of the United States of America|January 19, 2010
R loops stimulate genetic instability of CTG.CAG repeatsYunfu Lin, Sharon Y R Dent, John H Wilson, et al.The Journal of Biological Chemistry|June 28, 2002
Long CTG.CAG repeats from myotonic dystrophy are preferred sites for intermolecular recombinationAnna Pluciennik, Ravi R Iyer, Marek Napierala, et al.The Journal of Biological Chemistry|August 6, 2002
Sticky DNA, a long GAA.GAA.TTC triplex that is formed intramolecularly, in the sequence of intron 1 of the frataxin geneAlexandre A Vetcher, Marek Napierala, Ravi R Iyer, et al.Human Mutation|May 12, 2009
Gene conversion causing human inherited disease: evidence for involvement of non-B-DNA-forming sequences and recombination-promoting motifs in DNA breakage and repairNadia Chuzhanova, Jian-Min Chen, Albino Bacolla, et al.Pageof 4