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Johnstone, J.

Publications and source records attributed to Johnstone, J..

2 recordsLinked to original sources

TASL is required for age-related B cell formation and autoimmunity

The autoimmune disease systemic lupus erythematosus (SLE) is associated with genetic variants in the X-linked gene CXORF21, which encodes the protein TASL. TASL acts as an adaptor in the IRF5 pathway and is necessary for the phosphorylation of IRF5 in response to TLR7 or TLR9 stimulation. Here, we investigate the role of TASL in the humoral immune response, and in the development of lupus in the B6.MRLlpr murine model of SLE. We find that while TASL is dispensable for their development, it is required for the full activation of B cells via endolysosomal TLR stimulation, and consequent interferon signalling and inflammatory cytokine expression. Additionally, TASL is crucial for the emergence of age-associated B cells (ABCs), a B cell population derived from the extrafollicular response that increases with age and is expanded in autoimmune disease, and the production of IgG2c antibodies. We also find that deletion of TASL prevents the onset of autoimmunity in the genetically-determined B6.MRLlpr model of lupus.

immunology↗

Identification of plasmid-mediated tigecycline resistance tet(x4) and New Delhi Metallo-β-lactamase (NDM) in an Escherichia coli isolate from Canada

SynopsisRapid spread of carbapenemase producing Enterobacterales is a global health threat for which Tigecycline is one of the few remaining therapeutic options. Resistance by tet(x4) is particularly worrisome given its presence on mobile genetic elements. Here we report on a tigecycline-resistant E.coli strain isolated from a patient returning from Pakistan. A tet(x4) gene was found on an IncFII plasmid isolated from an ST410 E.coli co-harbouring NDM-5. The combination of carbapenemase and tet(x4) is concerning.

microbiology↗