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Korkmaz, F. T.

Publications and source records attributed to Korkmaz, F. T..

2 recordsLinked to original sources

Lung CD4+ resident memory T cells use airway secretory cells to stimulate and regulate neutrophilic allergic airways disease.

Neutrophilic asthma is a vexing disease, but mechanistic and therapeutic advancement will require better models of allergy-induced airway neutrophilia. Here, we find that periodic ovalbumin (OVA) inhalation in sensitized mice elicits allergic airway inflammation and pathophysiology mimicking neutrophilic asthma. OVA-experienced murine lungs harbor diverse clusters of CD4+ resident memory TRM cells, including unconventional ROR{gamma}tnegative/low TH17 cells. Acute OVA challenge instigates IL-17A secretion from these TRM cells, driving CXCL5 production from Muc5achigh airway secretory cells, leading to destructive airway neutrophilia. The TRM- and epithelial-cell signals discovered herein are also observed in adult human asthmatic airways. Epithelial antigen presentation regulates this biology by skewing TRM cells towards TH2 and TH1 fates, so that the TH1-related IFN-{gamma} suppresses IL-17A-driven, CXCL5-mediated airway neutrophilia. Concordantly, in vivo IFN-{gamma} supplementation improves disease outcomes. Thus, using our model of neutrophilic asthma we identify lung epithelial-CD4+ TRM cell crosstalk as a key rheostat of allergic airway neutrophilia. HighlightsO_LIRecurrent OVA inhalation experience predisposes mice to allergic airways neutrophilia C_LIO_LINeutrophil-prone lungs harbor CD4+ TRM cells including ROR{gamma}tnegative/low TH17 cells C_LIO_LIMuc5achigh secretory cells instruct CD4+ TRM fates and neutrophilia via MHC-II and CXCL5, respectively C_LIO_LIProphylactic or therapeutic delivery of IFN-{gamma} curbs allergic airway neutrophilia C_LI

immunology↗

Expression of a STING Gain-of-function Mutation in Endothelial Cells Initiates Lymphocytic Infiltration of the Lungs

Patients afflicted with STING gain-of-function mutations frequently present with debilitating interstitial lung disease (ILD) that is recapitulated in mice expressing the STINGV154M mutation (VM). Prior radiation chimera studies revealed an unexpected and critical role for non-hematopoietic cells in the initiation of ILD. To identify STING-expressing non-hematopoietic cell types relevant to ILD, we generated a conditional knock-in (CKI) model in which expression of the VM allele was directed to hematopoietic cells, fibroblasts, epithelial cells, or endothelial cells. Only endothelial cell-targeted expression of the mutant allele resulted in the recruitment of immune cells to the lung and the formation of bronchus-associated lymphoid tissue, as seen in the parental VM strain. These findings reveal the importance of endothelial cells as instigators of STING-driven lung disease and suggest that therapeutic targeting of STING inhibitors to endothelial cells could potentially mitigate inflammation in the lungs of SAVI patients or patients afflicted with other ILD-related disorders. SummaryPatients with STING gain-of-function (GOF) mutations develop life-threatening lung autoinflammation. In this study, Gao et al. utilize a mouse model of conditional STING GOF to demonstrate a role for endothelial STING GOF in initiating immune cell recruitment into lung tissues of SAVI mice.

immunology↗