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Nucleic Acids Research|August 24, 1999
RecG helicase activity at three- and four-strand DNA structuresP McGlynn, R G LloydProceedings of the National Academy of Sciences of the United States of America|July 19, 2001
Rescue of stalled replication forks by RecG: simultaneous translocation on the leading and lagging strand templates supports an active DNA unwinding model of fork reversal and Holliday junction formationP McGlynn, R G LloydCell|April 25, 2000
Modulation of RNA polymerase by (p)ppGpp reveals a RecG-dependent mechanism for replication fork progressionP McGlynn, R G LloydThe Journal of Biological Chemistry|September 12, 2001
Action of RuvAB at replication fork structuresP McGlynn, R G LloydNucleic Acids Research|June 28, 2000
Characterisation of the catalytically active form of RecG helicaseP McGlynn, A A Mahdi, R G LloydProceedings of the National Academy of Sciences of the United States of America|July 19, 2001
Formation of Holliday junctions by regression of nascent DNA in intermediates containing stalled replication forks: RecG stimulates regression even when the DNA is negatively supercoiledP McGlynn, R G Lloyd, K J MariansNucleic Acids Research|October 10, 1997
DNA binding and helicase domains of the Escherichia coli recombination protein RecGA A Mahdi, P McGlynn, S D Levett, et al.Journal of Molecular Biology|July 11, 1997
The DNA replication protein PriA and the recombination protein RecG bind D-loopsP McGlynn, A A Al-Deib, J Liu, et al.Annual Review of Entomology|September 14, 2011
The ecology of nest movement in social insectsTerrence P McGlynnThe American Naturalist|December 22, 1999
Non-native Ants Are Smaller than Related Native AntsTerrence P McGlynnPageof 14