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Transcription|April 2, 2015
Friedreich's ataxia--a case of aberrant transcription termination?Jill Sergesketter Butler, Marek Napierala
Disease Models & Mechanisms|March 3, 2012
Understanding the genetic and molecular pathogenesis of Friedreich's ataxia through animal and cellular modelsAlain Martelli, Marek Napierala, Hélène Puccio
RNA Biology|August 24, 2010
New insights into repeat instability: role of RNA•DNA hybridsElizabeth I McIvor, Urszula Polak, Marek Napierala
Trends in Pharmacological Sciences|March 26, 2019
Therapeutic Prospects for Friedreich's AtaxiaSiyuan Zhang, Marek Napierala, Jill S Napierala
The Journal of Biological Chemistry|September 17, 2005
Increased negative superhelical density in vivo enhances the genetic instability of triplet repeat sequencesMarek Napierala, Albino Bacolla, Robert D Wells
The Journal of Biological Chemistry|August 6, 2002
Sticky DNA: effect of the polypurine.polypyrimidine sequenceAlexandre A Vetcher, Marek Napierala, Robert D Wells
Nucleic Acids Research|July 13, 2011
Hyperexpansion of GAA repeats affects post-initiation steps of FXN transcription in Friedreich's ataxiaEunah Kim, Marek Napierala, Sharon Y R Dent
Stem Cell Research & Therapy|January 9, 2026
Human pluripotent stem cell models of Friedreich's ataxia: innovations, considerations, and future perspectivesHa Thi Nguyen, Marek Napierala, Jill S Napierala
The Journal of Biological Chemistry|June 5, 2002
Long CTG.CAG repeat sequences markedly stimulate intramolecular recombinationMarek Napierala, Pawel Parniewski, Anna Pluciennik, et al.
The Journal of Biological Chemistry|November 20, 2003
Structure-dependent recombination hot spot activity of GAA.TTC sequences from intron 1 of the Friedreich's ataxia geneMarek Napierala, Ruhee Dere, Alexandre Vetcher, et al.
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