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Boyd, A.

Publications and source records attributed to Boyd, A..

3 recordsLinked to original sources

Tuft cell-produced cysteinyl leukotrienes and IL-25 synergistically drivelung type 2 inflammation

Aeroallergen sensing by airway epithelial cells can trigger pathogenic immune responses leading to chronic type 2 inflammation, the hallmark of airway diseases such as asthma. Airway tuft cells are specialized chemosensory epithelial cells and the dominant source of the epithelial cytokine IL-25 in the trachea and of cysteinyl leukotrienes (CysLTs) in the naive murine nasal mucosa. The interaction of IL-25 and CysLTs and the contribution of tuft cell-derived CysLTs to the development of allergen-triggered inflammation in the airways has not been clarified. Here we show that inhalation of LTC4 in combination with a subthreshold dose of IL-25 leads to dramatic synergistic induction of type 2 inflammation throughout the lungs, causing rapid eosinophilia, dendritic cell (DC) and inflammatory type 2 innate lymphoid cell (ILC2) expansion, and goblet cell metaplasia. While lung eosinophilia is dominantly mediated through the classical CysLT receptor CysLT1R, type 2 cytokines and activation of innate immune cells require signaling through both CysLT1R and CysLT2R. Tuft cell-specific deletion of the terminal enzyme requisite for CysLT production, Ltc4s, was sufficient to reduce both the innate immune response in the lung - eosinophilia, KLRG1+ ILC2 activation and DC recruitment - and the systemic immune response in the draining lymph nodes after inhalation of the mold aeroallergen Alternaria. Our findings identify surprisingly potent synergy of CysLTs and IL-25 downstream of aeroallergen-trigged activation of airway tuft cells leading to a highly polarized type 2 immune response and further implicate airway tuft cells as powerful modulators of type 2 immunity in the lungs. One Sentence SummaryTuft cells produce two highly synergistic mediators: LTC4 and IL-25 to cooperatively induce allergen-driven airway inflammation.

immunology

Investigating expression of a human optimized cas9 transgene in Neurospora crassa

The CRISPR-associated Cas9 enzyme is used in molecular biology to engineer the genomes of a wide range of organisms. While Cas9 can be injected or transfected into a target cell to achieve the desired goal, there are situations where stable expression of Cas9 within a target organism is preferable. Here, we show that the model filamentous fungus Neurospora crassa is recalcitrant to heterologous expression of a human-optimized version of Streptococcus pyogenes cas9. Furthermore, partial optimization of cas9 by synonymous codon exchange failed to improve its expression in the fungus. Finally, we show that transgene expression can be detected when cas9Hs sequences are placed in the 3 UTR regions of transgene-derived mRNAs, but not when the same sequences are in the translated part of the transgene-derived mRNA. This finding suggests that the primary obstacle to high cas9Hs expression levels in N. crassa is translational in nature.

molecular biology

Alpha globin variation in the long-tailed macaque suggests malaria selection

Human haemoglobin variants, such as sickle, confer protection against death from malaria; consequently, frequencies of such variants are often greatly elevated in humans from malaria endemic regions. Among non-human primates, the long-tailed macaque, Macaca fascicularis, also displays substantial haemoglobin variation. Almost all M. fascicularis haemoglobin variation is in the alpha globin chain, encoded by two linked genes: HBA1 and HBA2. We demonstrate that alpha globin variation in M. fascicularis correlates with the strength of malaria selection. We identify a range of missense mutations in M. fascicularis alpha globin and demonstrate that some of these exhibit a striking HBA1 or HBA2 specificity, a pattern consistent with computational simulations of selection on genes exhibiting copy number variation. We propose that M. fascicularis accumulated amino acid substitutions in its alpha globin genes under malaria selection, in a process that closely mirrors, but does not entirely converge with, human malaria adaptation.

evolutionary biology