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Archives of Microbiology|March 13, 2014
Cyclic-AMP inhibition of fimbriae and prodigiosin production by Serratia marcescens is strain-dependentNicholas A Stella, Robert M Q ShanksBMC Ophthalmology|March 29, 2020
Biologically active pigment and ShlA cytolysin of Serratia marcescens induce autophagy in a human ocular surface cell lineKimberly M Brothers, Nicholas A Stella, Robert M Q ShanksJournal of Medical Microbiology|December 10, 2020
Differential susceptibility of airway and ocular surface cell lines to FlhDC-mediated virulence factors PhlA and ShlA from Serratia marcescensNicholas A Stella, Kimberly M Brothers, Robert M Q ShanksResearch in Microbiology|October 18, 2012
Mutation of crp mediates Serratia marcescens serralysin and global secreted protein productionRobert M Q Shanks, Nicholas A Stella, Kristin E Arena, et al.Journal of Microbiological Methods|September 15, 2020
mCloverBlaster: A tool to make markerless deletions and fusions using lambda red and I-SceI in Gram-negative bacterial genomesKara M Lehner, Nicholas A Stella, Rachel C Calvario, et al.Canadian Journal of Microbiology|December 8, 2015
Exploitation of a "hockey-puck" phenotype to identify pilus and biofilm regulators in Serratia marcescens through genetic analysisRobert M Q Shanks, Nicholas A Stella, Kimberly M Brothers, et al.Research in Microbiology|August 23, 2008
Catabolite repression control of flagellum production by Serratia marcescensNicholas A Stella, Eric J Kalivoda, Dawn M O'Dee, et al.Plos One|August 8, 2013
Bacterial cyclic AMP-phosphodiesterase activity coordinates biofilm formationEric J Kalivoda, Kimberly M Brothers, Nicholas A Stella, et al.Advances in Microbiology|December 21, 2013
The LysR Transcription Factor, HexS, Is Required for Glucose Inhibition of Prodigiosin Production by Serratia marcescens.Nicholas A Stella, James E Fender, Roni M Lahr, et al.Applied and Environmental Microbiology|April 22, 2008
The cyclic AMP-dependent catabolite repression system of Serratia marcescens mediates biofilm formation through regulation of type 1 fimbriaeEric J Kalivoda, Nicholas A Stella, Dawn M O'Dee, et al.Pageof 5