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Molecular Microbiology|June 7, 2021
DNA damage checkpoint activation affects peptidoglycan synthesis and late divisome components in Bacillus subtilisEmily A Masser, Peter E Burby, Wayne D Hawkins, et al.Molecular Cell|December 17, 2009
Hydroxyurea induces hydroxyl radical-mediated cell death in Escherichia coliBryan W Davies, Michael A Kohanski, Lyle A Simmons, et al.Molecular Microbiology|October 1, 2011
Mismatch repair causes the dynamic release of an essential DNA polymerase from the replication forkAndrew D Klocko, Jeremy W Schroeder, Brian W Walsh, et al.Molecular Microbiology|September 8, 2020
RnhP is a plasmid-borne RNase HI that contributes to genome maintenance in the ancestral strain Bacillus subtilis NCIB 3610Taylor M Nye, Emma K McLean, Andrew M Burrage, et al.Biorxiv : the Preprint Server for Biology|May 23, 2025
TlyA is a 23S and 16S 2'-O-methylcytidine methyltransferase important for ribosome assembly in Bacillus subtilisJennie L Hibma, Lia M Munson, Joshua D Jones, et al.Biorxiv : the Preprint Server for Biology|June 5, 2026
Mapping the rRNA methylome reveals contributions of methyltransferases to ribosome function and antibiotic sensitivityJennie L Hibma, Kaley M Simcox, Lia M Munson, et al.Journal of Bacteriology|January 21, 2014
RecD2 helicase limits replication fork stress in Bacillus subtilisBrian W Walsh, Samantha A Bolz, Sarah R Wessel, et al.Frontiers in Cellular and Infection Microbiology|September 13, 2017
Targeting the Type II Secretion System: Development, Optimization, and Validation of a High-Throughput Screen for the Identification of Small Molecule InhibitorsUrsula Waack, Tanya L Johnson, Khalil Chedid, et al.Nucleic Acids Research|January 15, 2026
TlyA is a 23S and 16S 2'-O-methylcytidine methyltransferase important for ribosome assembly in Bacillus subtilisJennie L Hibma, Lia M Munson, Joshua D Jones, et al.Journal of Bacteriology|June 4, 2014
RecO and RecR are necessary for RecA loading in response to DNA damage and replication fork stressJustin S Lenhart, Eileen R Brandes, Jeremy W Schroeder, et al.Pageof 10