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Microbiology (Reading, England)|March 13, 2021
Photoreactivation in an archaeon from geothermal environmentsDennis W GroganApplied and Environmental Microbiology|June 1, 1991
Evidence that beta-Galactosidase of Sulfolobus solfataricus Is Only One of Several Activities of a Thermostable beta-d-GlycosidaseDennis W GroganArchaea (Vancouver, B.C.)|July 7, 2015
Understanding DNA Repair in Hyperthermophilic Archaea: Persistent Gaps and Other Reasons to Focus on the ForkDennis W GroganCurrent Issues in Molecular Biology|May 4, 2004
Stability and repair of DNA in hyperthermophilic ArchaeaDennis W GroganBiochemical Society Transactions|January 16, 2009
Homologous recombination in Sulfolobus acidocaldarius: genetic assays and functional propertiesDennis W GroganJournal of Bacteriology|July 18, 2003
Cytosine methylation by the SuaI restriction-modification system: implications for genetic fidelity in a hyperthermophilic archaeonDennis W GroganExtremophiles : Life Under Extreme Conditions|December 1, 2022
Biological role of the major AP (abasic site) endonuclease of an archaeon from geothermal environmentsRupal Jain, Dennis W GroganJournal of Bacteriology|July 21, 2010
Discontinuity and limited linkage in the homologous recombination system of a hyperthermophilic archaeonDennis W Grogan, Jananie RockwoodFEMS Microbiology Letters|October 26, 2005
Homologous recombination of exogenous DNA with the Sulfolobus acidocaldarius genome: properties and usesNorio Kurosawa, Dennis W GroganJournal of Bacteriology|June 21, 2017
How a Genetically Stable Extremophile Evolves: Modes of Genome Diversification in the Archaeon Sulfolobus acidocaldariusDominic Mao, Dennis W GroganPageof 4