Reactive oxygen species are a critical weapon in the killing of Aspergillus fumigatus by polymorphonuclear leukocytes (PMN), as demonstrated by severe aspergillosis in chronic granulomatous disease. In the present study, A. fumigatus-produced mycotoxins (fumagillin, gliotoxin [GT], and helvolic acid) are examined for their effects on the NADPH oxidase activity in human PMN. Of these mycotoxins, only GT significantly and stoichiometrically inhibits phorbol myristate acetate (PMA)-stimulated O2- generation, while the other two toxins are ineffective. The inhibition is dependent on the disulfide bridge of GT, which interferes with oxidase activation but not catalysis of the activated oxidase. Specifically, GT inhibits PMA-stimulated events: p47phox phosphorylation, its incorporation into the cytoskeleton, and the membrane translocation of p67phox, p47phox, and p40phox, which are crucial steps in the assembly of the active NADPH oxidase. Thus, damage to p47phox phosphorylation is likely a key to inhibiting NADPH oxidase activation. GT does not inhibit the membrane translocation of Rac2. The inhibition of p47phox phosphorylation is due to the defective membrane translocation of protein kinase C (PKC) betaII rather than an effect of GT on PKC betaII activity, suggesting a failure of PKC betaII to associate with the substrate, p47phox, on the membrane. These results suggest that A. fumigatus may confront PMN by inhibiting the assembly of the NADPH oxidase with its hyphal product, GT.
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http://dx.doi.org/10.1128/IAI.72.6.3373-3382.2004 | DOI Listing |
Biomedica
December 2024
Laboratorio de Inmunodeficiencias, Instituto Nacional de Pediatría, Ciudad de México, México.
Introduction: Chronic granulomatous disease is a defect in phagocytosis due to deficiency of gp91phox, p22phox, p47phox, p40phox, and p67phox (classic form of the disease). Recently, EROS and p40phox deficiency were described as responsible for the non-classical form of the disease. The 1,2,3-dihydrorhodamine oxidation technique, with phorbol-12-myristate-13-acetate as a stimulus, is performed to diagnose the classic chronic granulomatous disease.
View Article and Find Full Text PDFBiomedica
December 2024
Laboratorio de Inmunodeficiencias, Instituto Nacional de Pediatría, Ciudad de México, México.
Chronic granulomatous disease is the inborn error of immunity with the highest frequency of invasive aspergillosis. In this context, invasive aspergillosis is frequent in adolescence, with rare cases before one year of age. We present a case of chronic granulomatous disease and invasive aspergillosis in a four-month-old infant.
View Article and Find Full Text PDFBiomedica
December 2024
Departamento de Alergología e Inmunología Clínica, Hospital Infantil de México Federico Gómez, Ciudad de México, México.
Introduction: Chronic granulomatous disease is a congenital immune disorder characterized by increased susceptibility to fungal and bacterial infections and dysregulated inflammation. It is caused by defects in the NADPH oxidase and EROS protein.
Objective: To characterize clinically and genetically four patients with chronic granulomatous disease at the Hospital Infantil de México Federico Gómez.
Ann Hepatol
January 2025
Department of Gastroenterology, Xinhua Hospital of zhejiang Province: The Second Affiliated Hospital of Zhejiang Chinese Medical University, Zhejiang, China. Electronic address:
Non-alcoholic fatty liver disease (NAFLD), now recognized as metabolic dysfunction-associated steatotic liver disease (MASLD), represents a significant and escalating global health challenge. Its prevalence is intricately linked to obesity, insulin resistance, and other components of the metabolic syndrome. As our comprehension of MASLD deepens, it has become evident that this condition extends beyond the liver, embodying a complex, multi-systemic disease with hepatic manifestations that mirror the broader metabolic landscape.
View Article and Find Full Text PDFJ Reprod Infertil
January 2024
Department of Histology and Embryology, Istanbul Medeniyet University, School of Medicine, Istanbul, Turkey.
Background: The newest NOX isoform, NOX5, has been found in mammalian spermatozoa. Many physiological and pathological situations in spermatozoa are mediated by reactive oxygen species (ROS). NOX5 is the main source of ROS in spermatozoa.
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