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To cause a systemic infection, Salmonella must respond to many environmental cues during mouse infection and express specific subsets of genes in a temporal and spatial manner, but the regulatory pathways are poorly established. To unravel how micro-environmental signals are processed and integrated...
ORGANISM(S): Salmonella enterica subsp. enterica serovar Typhimurium str. 14028S 
S. typhimurium 14028 wt, hfq and smpB were harvested from log phase LB (LBlog); (2), stationary phase LB (LBstat); (3) 4h MgM medium pH 5.0 after resuspension of LB stat culture (MgMshock); and (4) log phase MgM medium pH5.0 after 100fold dilution of an LB stat culture (MgMDil). Total RNA was extrac...
ORGANISM(S): Salmonella enterica subsp. enterica serovar Typhimurium 
Data from PeptideAtlas, [[http://www.peptideatlas.org/PASS/PASS00551 PASS00551]]. File: SBEP_STM_subcell-53c_14Jan11_Doc_10-09-53.mzml. Published as part of . From the Abstract: {{i}} Towards developing a systems-level pathobiological understanding of Salmonella enterica, we performed a subcellular...
ORGANISM(S): Salmonella_phage_c341_uid39795,salmonella_phage_e1_uid29079,salmonella_phage_epsilon34_uid33779,salmonella_phage_fels_1_uid29267,salmonella_phage_phisg_jl2_uid30063,salmonella_phage_se1_uid33483,salmonella_phage_setp3_uid19157,salmonella_phage_st64b_uid14228, Salmonella_enterica_serovar_typhimurium_14028s 
abundance based on Spectral counting, Interaction consistency score: 11.4, Coverage: 56
ORGANISM(S): 99287 
2006-00-00 | 2856723965 | PAXDB
The potential for commensal microorganisms indigenous to a host (the microbiome or microbiota) to alter infection outcome by influencing host-pathogen interplay is largely unknown. We used a multi-omics systems approach, incorporating proteomics, metabolomics, glycomics, and metagenomics, to explore...
2014-06-24 | MTBLS96 | MetaboLights
Salmonella enterica serovar Typhimurium (S. Typhimurium) is a facultative pathogen that uses complex mechanisms to invade and proliferate within mammalian host cells. To investigate possible contributions of metabolic processes to virulence in S. Typhimurium grown under conditions known to induce ex...
2013-05-02 | MTBLS35 | MetaboLights
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