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Image Search Results
Journal: eLife
Article Title: Impaired respiration elicits SrrAB-dependent programmed cell lysis and biofilm formation in Staphylococcus aureus
doi: 10.7554/eLife.23845
Figure Lengend Snippet: Strains and plasmids used in this study. DOI: http://dx.doi.org/10.7554/eLife.23845.018
Article Snippet: JMB 7270 , hmrA::Tn(ermB) ,
Techniques: Control, Plasmid Preparation, Cloning
Journal: Infection and Immunity
Article Title: SaeRS Is Responsive to Cellular Respiratory Status and Regulates Fermentative Biofilm Formation in Staphylococcus aureus
doi: 10.1128/IAI.00157-17
Figure Lengend Snippet: Increased amounts of SaeR∼P are required for fermentative biofilm formation, and the SaeS kinase activity inhibitor zinc attenuates fermentative biofilm formation. (A) Transcript levels corresponding to coa are decreased in a ΔsaePQRS strain during fermentative growth. Biofilms of the WT (JMB 1100) and ΔsaePQRS::spc (JMB 1335) strains were cultured fermentatively, mRNA was extracted, and the abundance of the coa transcript was quantified. Data were normalized to 16S rRNA levels and thereafter to the levels observed in the WT. (B) The Newman strain of S. aureus forms SaeSP18-dependent biofilms during aerobic growth. Aerobic biofilm formation for the Newman strains containing the wild-type saeSP18 allele (JMB 1422), the saeSL18 allele (JMB 8263), or the saeS::Tn (JMB 7077) mutation is displayed. (C) Constitutive expression of the saeSP18 allele induces aerobic biofilm formation in the LAC WT strain. The biofilm formation of the LAC WT strain (JMB 1100) carrying pOS (pEV) or pOS_saeSP18R (psaeSP18R) following aerobic growth is displayed. (D) Supplementation of the growth medium with zinc, an inhibitor of SaeS kinase activity, results in a concentration-dependent decrease in fermentative biofilm formation. The biofilm formation of the LAC WT and the LAC saeS::Tn (JMB 7076) strains following fermentative growth in medium supplemented with various concentrations of zinc is displayed. The data represent the average values for eight wells (B to D) or from triplicate assays (A), and error bars represent standard deviations. Error bars are displayed for all data but on occasion may be too small to see. Statistical significance was calculated using a two-tailed Student's t test. *, P < 0.05.
Article Snippet: JMB 7076 ,
Techniques: Activity Assay, Cell Culture, Mutagenesis, Expressing, Concentration Assay, Two Tailed Test
Journal: Infection and Immunity
Article Title: SaeRS Is Responsive to Cellular Respiratory Status and Regulates Fermentative Biofilm Formation in Staphylococcus aureus
doi: 10.1128/IAI.00157-17
Figure Lengend Snippet: SaeRS-dependent biofilm formation is responsive to the cellular respiratory status, and a menaquinone auxotroph forms Sae-dependent biofilms. (A) The biofilm formation of a ΔsaePQRS strain is attenuated to a lower degree upon supplementation of anaerobic biofilms with the alternate electron acceptor nitrate. The biofilm formation of the WT (JMB 1100) and the ΔsaePQRS::spc (JMB 1335) strains following anaerobic growth in the presence or absence of 1 mM nitrate is displayed. (B) Induction of biofilm formation in a ΔsaePQRS strain is attenuated upon chemical inhibition of respiration. The biofilm formation of the WT and ΔsaePQRS::spc strains following aerobic growth in the presence or absence of 50 μM azide is displayed. (C) A menaquinone auxotroph forms SaeRS-dependent biofilms aerobically. The aerobic biofilm formation of the WT, menF::Tn (JMB 6219), saeR::Tn menF::Tn (JMB 7109), and saeS::Tn menF::Tn (JMB 7081) strains is displayed. The data represent the average values for eight wells, and error bars represent standard deviations. Error bars are displayed for all data but on occasion may be too small to see. Statistical significance was calculated using a two-tailed Student's t test. *, P < 0.05.
Article Snippet: JMB 7076 ,
Techniques: Inhibition, Two Tailed Test
Journal: Infection and Immunity
Article Title: SaeRS Is Responsive to Cellular Respiratory Status and Regulates Fermentative Biofilm Formation in Staphylococcus aureus
doi: 10.1128/IAI.00157-17
Figure Lengend Snippet: SaeRS and SrrAB influence fermentative biofilm formation independently of one another. (A) Induction of fermentative biofilm formation is nearly absent in the ΔsrrAB saeS::Tn strain. The biofilm formation of the WT (JMB 1100) and the ΔsrrAB saeS::Tn (JMB 7068) strains following aerobic and fermentative growth is displayed. To allow assessment of induction levels, the data were normalized to the biofilm levels displayed by each strain under aerobic growth. (B and C) The biofilm formation phenotypes of the ΔsaeS::Tn and ΔsrrAB mutations are additive. The biofilm formation of the WT, ΔsrrAB (JMB 1467), saeS::Tn (JMB 7076), and ΔsrrAB saeS::Tn strains following fermentative growth is displayed. Data were normalized with respect to the WT (B) or with respect to the parental strain into which the ΔsrrAB mutation was introduced (i.e., the WT or saeS::Tn strain) (C). The data represent the average values for eight wells, and error bars represent standard deviations. Error bars are displayed for all data but on occasion may be too small to see. Statistical significance was calculated using a two-tailed Student's t test. *, P < 0.05.
Article Snippet: JMB 7076 ,
Techniques: Mutagenesis, Two Tailed Test
Journal: Infection and Immunity
Article Title: SaeRS Is Responsive to Cellular Respiratory Status and Regulates Fermentative Biofilm Formation in Staphylococcus aureus
doi: 10.1128/IAI.00157-17
Figure Lengend Snippet: Microbial strains used in this study
Article Snippet: JMB 7076 ,
Techniques:
Journal: eLife
Article Title: Impaired respiration elicits SrrAB-dependent programmed cell lysis and biofilm formation in Staphylococcus aureus
doi: 10.7554/eLife.23845
Figure Lengend Snippet: Strains and plasmids used in this study. DOI: http://dx.doi.org/10.7554/eLife.23845.018
Article Snippet: JMB 5577 , icaA::Tn(
Techniques: Plasmid Preparation, Clone Assay