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Biomedical subjects

Kate L Jeffrey

Publications and source records attributed to Kate L Jeffrey.

3 recordsLinked to original sources

Functional chimeric mRNAs encode proteins in mammalian immunity.

Individual mammalian mRNAs and proteins are typically believed to originate from single genomic loci, with isoform diversity arising through cis-splicing of pre-mRNA. Whether mRNA from distant genes can undergo trans-splicing to generate functionally relevant chimeric transcripts has remained unclear. Here we develop a pipeline combining long-read direct RNA sequencing with non-targeted and targeted validation to identify chimeric transcripts in macrophages. Chromatin conformation capture studies reveal that inflammation induces interchromosomal DNA interactions, positioning parent genes proximally to facilitate the formation of chimeric mRNA. Notably, we identify a protein-coding chimeric mRNA representing a fusion between the pore-forming protein gasdermin D (GSDMD)1,2 and a C-terminal domain translated out of frame from Tmem106a (Gsdmd-Tmem106a) in mice. We show that inflammasome priming upregulates Gsdmd-Tmem106a, with the protein localizing to the plasma membrane. After activation of the inflammasome, GSDMD-TMEM106A directly interacts with canonical GSDMD N termini to accelerate and enhance pore formation and IL-1β release. Finally, we show that GSDMD-TMEM106A balances host defence and immunopathology in vivo: its loss protects against lethal sepsis but compromises antibacterial defence, whereas overexpression enhances host protection while increasing sepsis lethality. We establish that protein-coding chimeric mRNAs formed by regulated transcript fusion events are operative during inflammation and immunity.

Journal Article↗

Positive regulation of immune cell function and inflammatory responses by phosphatase PAC-1.

Mitogen-activated protein kinases facilitate many cellular processes and are essential for immune cell function. Their activity is controlled by kinases and dual-specificity phosphatases. A comprehensive microarray analysis of human leukocytes identified DUSP2 (encoding the phosphatase PAC-1) as one of the most highly induced transcripts in activated immune cells. We generated Dusp2(-/-) mice and found considerably reduced inflammatory responses in the 'K/BxN' model of rheumatoid arthritis. PAC-1 deficiency led to increased activity of Jun kinase (Jnk) but unexpected impairment of the activity of extracellular signal-regulated kinase (Erk) and the kinase p38, reduced activity of the transcription factor Elk1 and a complex of mobilized transcription factor NFAT and the AP-1 transcription factor and decreased effector immune cell function. Thus, PAC-1 is a key positive regulator of inflammatory cell signaling and effector functions, mediated through Jnk and Erk mitogen-activated protein kinase crosstalk.

Animals↗

Protease-activated receptor-2 activating peptide SLIGRL inhibits bacterial lipopolysaccharide-induced recruitment of polymorphonuclear leukocytes into the airways of mice.

Protease-activated receptor-2 (PAR2) acts as a receptor for trypsin and trypsin-like enzymes. The role of this receptor in airway inflammation is uncertain. In this study we assessed the effect of activation of PAR2 following intranasal administration of the peptide activator of PAR2, SLIGRL, over 72 h in mice. The extent of immune cell infiltration into the airways and activities of matrix metalloprotease-2 (MMP-2) and MMP-9 were assessed in bronchoalveolar lavage (BAL) by differential cell counts and gelatin zymography, respectively. SLIGRL did not cause a change in the number or types of cells retrieved in BAL at any time point and did not alter the levels of MMP-2 and MMP-9 present in BAL. In contrast, similar intranasal administration of bacterial lipopolysaccharide (LPS) caused a large influx of neutrophilic polymorphonuclear leukocytes, which was associated with increased MMP-2 at 3 h only and MMP-9 activity from 3-72 h. Simultaneous administration of SLIGRL and LPS transiently potentiated increased MMP-9 activity at 3 h but markedly inhibited neutrophil influx and elevated MMP-2 activity at 3 h. These findings suggest that PAR2 agonists may be useful therapeutic molecules in pulmonary inflammatory diseases.

Animals↗