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Mobile DNA|January 16, 2020
Compensating for over-production inhibition of the Hsmar1 transposon in Escherichia coli using a series of constitutive promotersMichael Tellier, Ronald ChalmersNucleic Acids Research|August 21, 2019
Targeted DNA transposition in vitro using a dCas9-transposase fusion proteinShivam Bhatt, Ronald ChalmersGenetica|January 20, 2010
Delivering the goods: viral and non-viral gene therapy systems and the inherent limits on cargo DNA and internal sequencesHelen Atkinson, Ronald ChalmersPlos One|July 14, 2009
Base flipping in tn10 transposition: an active flip and capture mechanismJulien Bischerour, Ronald ChalmersNucleic Acids Research|October 18, 2018
Human SETMAR is a DNA sequence-specific histone-methylase with a broad effect on the transcriptomeMichael Tellier, Ronald ChalmersDNA Repair|June 26, 2019
The roles of the human SETMAR (Metnase) protein in illegitimate DNA recombination and non-homologous end joining repairMichael Tellier, Ronald ChalmersNucleic Acids Research|April 7, 2007
Base-flipping dynamics in a DNA hairpin processing reactionJulien Bischerour, Ronald ChalmersNucleic Acids Research|December 10, 2013
Hyperactive mariner transposons are created by mutations that disrupt allosterism and increase the rate of transposon end synapsisDanxu Liu, Ronald ChalmersPlos One|January 24, 2013
Hsmar1 transposition is sensitive to the topology of the transposon donor and the targetCorentin Claeys Bouuaert, Ronald ChalmersNucleic Acids Research|October 28, 2009
Transposition of the human Hsmar1 transposon: rate-limiting steps and the importance of the flanking TA dinucleotide in second strand cleavageCorentin Claeys Bouuaert, Ronald ChalmersPageof 4