Timothy R. Hoover
Affiliations: | University of Georgia, Athens, Athens, GA, United States |
Area:
Microbiology BiologyGoogle:
"Timothy Hoover"
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Publications
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Chu JK, Zhu S, Herrera CM, et al. (2019) Loss of a cardiolipin synthase in G27 blocks flagellum assembly. Journal of Bacteriology |
Phillips RS, Poteh P, Krajcovic D, et al. (2019) The crystal structure of D-ornithine/D-lysine decarboxylase, a stereoinverting decarboxylase: Implications for substrate specificity and stereospecificity of fold III decarboxylases. Biochemistry |
Phillips RS, Poteh P, Miller KA, et al. (2017) STM2360 encodes a d-ornithine/d-lysine decarboxylase in Salmonella enterica serovar typhimurium. Archives of Biochemistry and Biophysics |
Miller KA, Phillips RS, Kilgore PB, et al. (2015) A mannose family phosphotransferase system permease and associated enzymes are required for utilization of fructoselysine and glucoselysine in Salmonella enterica serovar Typhimurium. Journal of Bacteriology |
Tsang J, Hoover TR. (2015) Basal Body Structures Differentially Affect Transcription of RpoN- and FliA-Dependent Flagellar Genes in Helicobacter pylori. Journal of Bacteriology. 197: 1921-30 |
Tsang J, Hirano T, Hoover TR, et al. (2015) Helicobacter pylori FlhA Binds the Sensor Kinase and Flagellar Gene Regulatory Protein FlgS with High Affinity. Journal of Bacteriology. 197: 1886-92 |
Tsang J, Hoover TR. (2014) Requirement of the flagellar protein export apparatus component FliO for optimal expression of flagellar genes in Helicobacter pylori. Journal of Bacteriology. 196: 2709-17 |
Boehm M, Haenel I, Hoy B, et al. (2013) Extracellular secretion of protease HtrA from Campylobacter jejuni is highly efficient and independent of its protease activity and flagellum. European Journal of Microbiology & Immunology. 3: 163-73 |
Samuels DJ, Frye JG, Porwollik S, et al. (2013) Use of a promiscuous, constitutively-active bacterial enhancer-binding protein to define the σ⁵⁴ (RpoN) regulon of Salmonella Typhimurium LT2. Bmc Genomics. 14: 602 |
Miller KA, Phillips RS, Mrázek J, et al. (2013) Salmonella utilizes D-glucosaminate via a mannose family phosphotransferase system permease and associated enzymes. Journal of Bacteriology. 195: 4057-66 |