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Journal of Molecular Biology|November 25, 1998
Primer-template misalignments during leading strand DNA synthesis account for the most frequent spontaneous mutations in a quasipalindromic region in Escherichia coliW A Rosche, L S Ripley, R R SindenMolecular & General Genetics : MGG|January 1, 1983
Mutator versus antimutator activity of a T4 DNA polymerase mutant distinguishes two different frameshifting mechanismsL S Ripley, B W Glickman, N B ShoemakerMutation Research|April 1, 1993
A proflavin-induced frameshift hotspot in the thymidylate synthase gene of bacteriophage T4M D Brown, L S Ripley, D H HallGenetics|July 1, 1973
Thymineless mutagenesis in bacteriophage T4M D Smith, R R Green, L S Ripley, et al.Proceedings of the National Academy of Sciences of the United States of America|November 1, 1976
Heat mutagenesis in bacteriophage T4: the transversion pathwayP M Bingham, R H Baltz, L S Ripley, et al.Journal of Biomolecular Structure & Dynamics|October 1, 1992
A structural model for sequence-specific proflavin-DNA interactions during in vitro frameshift mutagenesisH M Berman, J L Sussman, L Joshua-Tor, et al.Biophysical Journal|April 1, 1983
Capture of spatially homogeneous chemical reactions in tissue by freezingA Clark, P A ClarkBiophysical Journal|December 1, 1985
Local oxygen gradients near isolated mitochondriaA Clark, P A ClarkJournal of Molecular Biology|April 20, 1988
Hotspot sites for acridine-induced frameshift mutations in bacteriophage T4 correspond to sites of action of the T4 type II topoisomeraseL S Ripley, J S Dubins, J G deBoer, et al.Arthritis Research|November 30, 2000
Post-transcriptional regulation of pro-inflammatory gene expressionA ClarkPageof 637