Project description:To explore the molecular mechanism of the DNA phosphorothioate modification-dependent restriction system, the transcriptomes of Salmonella enterica serovar Cerro 87 wild-type and its modification or restriction genes deletion mutants were compared by microarray analysis. Global gene expression in three strains, Salmonella enterica serovar Cerro 87 wild-type and its modification or restriction genes deletion mutants, were measured at three different growth state, respectively. Three independent experiments were performed at each condition.
Project description:To explore the molecular mechanism of the DNA phosphorothioate modification-dependent restriction system, the transcriptomes of Salmonella enterica serovar Cerro 87 wild-type and its modification or restriction genes deletion mutants were compared by microarray analysis.
Project description:To capture proteins that exhibit differential binding with PT- and non-PT-modified DNA in vivo, we performed pull-down assays using biotinylated DNA probes and the cell lysate of S. enterica serovar Cerro 87 that contains the dndBCDE-dndFGH module. For these experiments, we used two 30 bp DNA probes, B12 and B34, which share the same DNA sequences but possess PT-modified 5’-GPSAAC-3’/5’-GPSTTC-3’ and non-PT-modified 5’-GAAC-3’/5’-GTTC-3’ motifs, respectively.
Project description:This project is about the proteomic and phosphoproteomic analyses of phage JSS1 or JSS1Δ004 infected Salmonella strains. AD032TQ is proteomes of phage JSS1 or JSS1Δ004 infected S. enterica serovar Cerro 87. AD032TPST is phosphoproteome of phage JSS1 or JSS1Δ004 infected S. enterica serovar Cerro 87. AE065TQ is proteomes of phage JSS1 or JSS1Δ004 infected CX1, a S. enterica serovar Cerro 87 dndFGH deficient strain, harboring a plasmid expressing DndFGH from Escherichia coli B7A. AE065TPST is phosphoproteome of phage JSS1 or JSS1Δ004 infected CX1 harboring a plasmid expressing DndFGH from E. coli B7A.
Project description:This project is about the proteomic and phosphoproteomic analyses of phage JSS1 or JSS1Δ004 infected Salmonella strains. AD032TQ is proteomes of phage JSS1 or JSS1Δ004 infected S. enterica serovar Cerro 87. AD032TPST is phosphoproteome of phage JSS1 or JSS1Δ004 infected S. enterica serovar Cerro 87. AE065TQ is proteomes of phage JSS1 or JSS1Δ004 infected CX1, a S. enterica serovar Cerro 87 dndFGH deficient strain, harboring a plasmid expressing DndFGH from Escherichia coli B7A. AE065TPST is phosphoproteome of phage JSS1 or JSS1Δ004 infected CX1 harboring a plasmid expressing DndFGH from E. coli B7A.
Project description:This project is about the proteomic and phosphoproteomic analyses of phage JSS1 or JSS1Δ004 infected Salmonella strains. AD032TQ is proteomes of phage JSS1 or JSS1Δ004 infected S. enterica serovar Cerro 87. AD032TPST is phosphoproteome of phage JSS1 or JSS1Δ004 infected S. enterica serovar Cerro 87. AE065TQ is proteomes of phage JSS1 or JSS1Δ004 infected CX1, a S. enterica serovar Cerro 87 dndFGH deficient strain, harboring a plasmid expressing DndFGH from Escherichia coli B7A. AE065TPST is phosphoproteome of phage JSS1 or JSS1Δ004 infected CX1 harboring a plasmid expressing DndFGH from E. coli B7A.
Project description:This project is about the proteomic and phosphoproteomic analyses of phage JSS1 or JSS1Δ004 infected Salmonella strains. AD032TQ is proteomes of phage JSS1 or JSS1Δ004 infected S. enterica serovar Cerro 87. AD032TPST is phosphoproteome of phage JSS1 or JSS1Δ004 infected S. enterica serovar Cerro 87. AE065TQ is proteomes of phage JSS1 or JSS1Δ004 infected CX1, a S. enterica serovar Cerro 87 dndFGH deficient strain, harboring a plasmid expressing DndFGH from Escherichia coli B7A. AE065TPST is phosphoproteome of phage JSS1 or JSS1Δ004 infected CX1 harboring a plasmid expressing DndFGH from E. coli B7A.
Project description:This study compares the global transcriptomes of highly pathogenic bovine-adapted S. enterica serovar Dublin and the less pathogenic bovine-adapted serovar Cerro during interactions with bovine epithelial cells, to identify genes that impact serovar-related outcomes of S. enterica infections in dairy animals