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Mikami, Y.

Publications and source records attributed to Mikami, Y..

2 recordsLinked to original sources

Dysregulated Airway Host Defense in Hyper IgE Syndrome due to STAT3 Mutations

RationaleHyper IgE syndrome (STAT3-HIES), also known as Jobs syndrome, is a rare immunodeficiency disease typically caused by dominant-negative STAT3 mutations. STAT3-HIES syndrome is characterized by chronic pulmonary infection and inflammation, suggesting impairment of pulmonary innate host defense. ObjectivesTo identify airway epithelial host defense defects consequent to STAT3 mutations that, in addition to reported mutant STAT3 immunologic abnormalities, produce pulmonary infection. MethodsSTAT3-HIES sputum was evaluated for biochemical/biophysical properties. STAT3-HIES excised lungs were harvested for histology; bronchial brush samples were collected for RNA sequencing and in vitro culture. A STAT3-HIES-specific mutation (R382W), expressed by lentiviruses, and a STAT3 knockout, generated by CRISPR/Cas9, were maintained in normal human bronchial epithelia under basal or inflammatory (IL1{beta}) conditions. Effects of STAT3 deficiency on transcriptomics, and epithelial ion channel, secretory, antimicrobial, and ciliary functions were assessed. Measurements and Main ResultsMucus concentrations and viscoelasticity were increased in STAT3-HIES sputum. STAT3-HIES excised lungs exhibited mucus obstruction and elevated IL1{beta} expression. STAT3 deficiency impaired CFTR-dependent fluid and mucin secretion, inhibited expression of antimicrobial peptides, cytokines, and chemokines, and acidified airway surface liquid at baseline and post-IL1{beta} exposure in vitro. Notably, mutant STAT3 suppressed IL1R1 expression. STAT3 mutations also inhibited ciliogenesis in vivo and impaired mucociliary transport in vitro, a process mediated via HES6 suppression. Administration of a {gamma}-secretase inhibitor increased HES6 expression and improved ciliogenesis in STAT3 R382W mutant cells. ConclusionsSTAT3 dysfunction leads to multi-component defects in airway epithelial innate defense, which, in conjunction with STAT3-HIES immune deficiency, contributes to chronic pulmonary infection.

cell biology↗

Development and Validation of LAMP Primer Sets for Rapid and Correct Identification of Aspergillus fumigatus Carrying the cyp51A TR46 Azole Resistance Gene

Infections due to triazole resistant Aspergillus fumigatus are increasingly reported worldwide and are associated with treatment failure and mortality. The principal class of azole resistant isolates is characterized by the presence of tandem repeats of 34 bp or 46 bp (TR34 or TR46) within the promoter region of the cyp51A gene. Loop-mediated isothermal amplification (LAMP) is a widely used nucleic acid amplification system with high rapidity and specificity. In this paper, we report a new LAMP assay method to detect the 46 bp tandem repeat insertion in the cyp51A gene promoter region, named TR46-LAMP assay, based on the use of a newly designed specific LAMP primer sets. TR46 is a high-prevalence allele which is associated with the occurrence of multi-triazole resistance of A. fumigatus in patients as well as isolates from the environment. This newly designed TR46-LAMP assay was validated as a useful method for specific detection of azole-resistant A. fumigatus isolates bearing TR462 as well as TR463 in cyp51A gene promoter region. It could also differentiate azole-resistant isolates of TR46 tandem repeats from those with TR34 tandem repeats in cyp51A genes. These results showed this TR46-LAMP method is specific, rapid, and also provides crucial insights to enable development of novel antifungal therapeutic strategies against severe fungal infections due to A. fumigatus with TR46 tandem repeats.

molecular biology↗