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Results: 1-13 |
Results: 13

Authors: McGlynn, P Lloyd, RG
Citation: P. Mcglynn et Rg. Lloyd, Rescue of stalled replication forks by RecG: Simultaneous translocation onthe leading and lagging strand templates supports an active DNA unwinding model of fork reversal and Holliday junction formation, P NAS US, 98(15), 2001, pp. 8227-8234

Authors: McGlynn, P Lloyd, RG Marians, KJ
Citation: P. Mcglynn et al., Formation of Holliday junctions by regression of nascent DNA in intermediates containing stalled replication forks: RecG stimulates regression even when the DNA is negatively supercoiled, P NAS US, 98(15), 2001, pp. 8235-8240

Authors: Bolt, EL Lloyd, RG Sharples, GJ
Citation: El. Bolt et al., Genetic analysis of an archaeal Holliday junction resolvase in Escherichiacoli, J MOL BIOL, 310(3), 2001, pp. 577-589

Authors: McGlynn, P Lloyd, RG
Citation: P. Mcglynn et Rg. Lloyd, Action of RuvAB at replication fork structures, J BIOL CHEM, 276(45), 2001, pp. 41938-41944

Authors: Lloyd, RG
Citation: Rg. Lloyd, Brain refill from down under, CAN MED A J, 163(1), 2000, pp. 13-13

Authors: McGlynn, P Mahdi, AA Lloyd, RG
Citation: P. Mcglynn et al., Characterisation of the catalytically active form of RecG helicase, NUCL ACID R, 28(12), 2000, pp. 2324-2332

Authors: Ingleston, SM Sharples, GJ Lloyd, RG
Citation: Sm. Ingleston et al., The acidic pin of RuvA modulates Holliday junction binding and processing by the RuvABC resolvasome, EMBO J, 19(22), 2000, pp. 6266-6274

Authors: McGlynn, P Lloyd, RG
Citation: P. Mcglynn et Rg. Lloyd, Modulation of RNA polymerase by (p)ppGpp reveals a RecG-dependent mechanism for replication fork progression, CELL, 101(1), 2000, pp. 35-45

Authors: Bolt, EL Sharples, GJ Lloyd, RG
Citation: El. Bolt et al., Analysis of conserved basic residues associated with DNA binding (Arg69) and catalysis (Lys76) by the RusA Holliday junction resolvase, J MOL BIOL, 304(2), 2000, pp. 165-176

Authors: Hargreaves, D Rafferty, JB Sedelnikova, SE Lloyd, RG Rice, DW
Citation: D. Hargreaves et al., Crystallization of Escherichia coli RuvA complexed with a synthetic Holliday junction, ACT CRYST D, 55, 1999, pp. 263-265

Authors: McGlynn, P Lloyd, RG
Citation: P. Mcglynn et Rg. Lloyd, RecG helicase activity at three- and four-strand DNA structures, NUCL ACID R, 27(15), 1999, pp. 3049-3056

Authors: Bolt, EL Sharples, GJ Lloyd, RG
Citation: El. Bolt et al., Identification of three aspartic acid residues essential for catalysis by the RusA Holliday junction resolvase, J MOL BIOL, 286(2), 1999, pp. 403-415

Authors: Sharples, GJ Ingleston, SM Lloyd, RG
Citation: Gj. Sharples et al., Holliday junction processing in bacteria: Insights from the evolutionary conservation of RuVABC, RecG, and RusA, J BACT, 181(18), 1999, pp. 5543-5550
Risultati: 1-13 |