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Smith, L. Y.

Publications and source records attributed to Smith, L. Y..

2 recordsLinked to original sources

Global expression profile of Enterohemorrhagic Escherichia coli O157:H7 in phagosome of murine macrophages

EHEC O157:H7 is responsible for Hemolytic Uremic Syndrome (HUS) outbreaks in humans and its virulence is associated with Shiga toxin (Stx). During the pathogenesis of HUS, EHEC O157:H7 is phagocytized by the intestinal host macrophage into the phagosome. According to our study, a low percentage of phagocytized bacteria survived in the murine macrophage phagosome. To understand the initials mechanisms involved in bacterial persistence, we performed a global profile of bacterial RNAseq analysis in the early phagosome of murine macrophage and in vitro assays with more extreme stress conditions. The defense strategy of an early murine phagosome consisted on producing DNA damage, membrane damage, acid pH and nitric oxide (NO) agents. These hostile conditions triggering the bacterial SOS response, lipid biosynthesis and NO detoxification enzymes in response to DNA damage, membrane damage and nitric oxide agents, respectively. In turn, to survive, the bacterium conserves energy by downregulating flagellar biosynthesis, T3SS and T6SS virulence mechanisms. In contrast, stx2a expression is upregulated. At the same time, it increases the ribosomal levels and amino acid synthesis to react more effectively against adverse conditions. Under more extreme stress conditions, EHEC O157:H7 expressed genes related to an acidic environment (pH 4.5) upregulating the acid stress response pathways AR2-5, whereas, upon high concentrations of hydrogen peroxide, it transcribed higher levels of genes of the OxyR pathway and subsequently hydrogen peroxide oxidative stress-related genes.

microbiology↗

Antibacterial T6SS1 cluster identification and bioinformatics characterization of their putative effectors in Shiga toxin-producing Escherichia coli

Shiga toxing-producing Escherichia coli (STEC) O22:H8 strain is a serotype occasionally isolated in Argentinian cattle. Preliminary works showed that the cattle carrying STEC O22:H8 strains could not be experimentally colonized by EHEC O157:H7 strain. The type 6 secretion system (T6SS) is one of the most versatile virulence mechanisms involved in delivering effectors, particularly the T6SS1 translocate antibacterial toxins effectors during bacterial competition for niche-space. In this work, we could evidence the molecular bases of the success of STEC O22:H8 (154) strain during bacterial competition against EHEC O157:H7 strains. The genome sequence of STEC O22:H8 (154) allowed us to identify a complete T6SS1 cluster. In addition, we identify and characterized several putative T6SS1-antibacterial effectors encoded inside the T6SS1 clusters and in genomic pathogenic islands. Competition assays against EHEC O157:H7 strain confirmed the antibacterial activity of STEC O22:H8 (154) strain in vitro. Considering the absent of T6SS1 in STEC strains, we proposed the recent horizontal transfer acquisition and the most probably donor belong to the same Escherichia coli species. A safe STEC O22:H8 (154){Delta} stx would be used as a new strategy to fight STECs in bovine intestinal colonization, leading in a reduction in beef contamination and consequently HUS cases in humans.

microbiology↗