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Biology subjects

Horvath, G. L.

Publications and source records attributed to Horvath, G. L..

2 recordsLinked to original sources

Cytosolic sodium accumulation is a cellular danger signal triggering endocytic dysfunction and NLRP3 inflammasome activation

Detecting and responding to noxious molecules internalized within the endolysosomal system, including bacterial toxins and particulate matter, is essential to prevent cellular intoxication and damage. Here, we demonstrate that the NLRP3 inflammasome detects perturbations of the endolysosomal system by large clostridial toxins, including toxin B from Clostridioides difficile, as well as monosodium urate and silica crystals in human macrophages. These molecules cause sodium efflux from the endolysosomal system into the cytosol, driving cytosolic sodium accumulation. The rapid increase in cytosolic sodium subsequently triggers cell swelling and inhibits endocytic trafficking to activate the NLRP3 inflammasome. Furthermore, we demonstrate that cytosolic sodium accumulation is a common trigger for NLRP3 activation by non-particulate stimuli, including nigericin and inhibition of the Na+/K+ ATPase. Our findings reveal that accumulation of cytosolic sodium is the common denominator underlying activation of the NLRP3 inflammasome upon exposure to different danger signals.

immunology↗

Epigenetic regulation of innate immune genes and enhanced interleukin-10 expression underlie chronic subclinical Plasmodium chabaudi infection

Subclinical (asymptomatic) parasitemia is very common amongst Plasmodium-infected individuals. The immunological mechanisms underlying subclinical parasitemia remain elusive. We investigated the immune regulatory mechanisms behind chronic asymptomatic Plasmodium infection using mice lacking humoral immunity ({micro}MT-/- mice). {micro}MT-/- mice became chronically infected, despite lacking outward signs of disease, and exhibited increased macrophage numbers, decreased dendritic and CD4 cells, massive hemozoin accumulation in the spleen and bone marrow, and inadequate hematopoiesis. These changes were accompanied by high circulating levels of interleukin-10 (IL-10), enhanced chromatin accessibility of the STAT3 promoter, and enhanced STAT3 binding to the IL-10 promoter in macrophages. Inhibition of IL-10 signaling, despite promoting parasite clearance, resulted in a proinflammatory response, weight loss, and mortality. These results suggest that epigenetic changes induced by chronic P. chabaudi infection lead to high levels of circulating IL-10, protecting chronically infected mice against an excessive inflammatory response to high levels of blood-stage parasites. Author summaryMalaria is a life-threatening disease with a range of symptoms, and it is induced in humans by infections with different species of Plasmodium. Highly prevalent in endemic regions, asymptomatic Plasmodium infections are related to long-term exposure to the parasite due to multiple infections and have been demonstrated in human and mouse studies to be associated with elevated levels of IL-10. However, how IL-10 levels remain elevated in the circulation in individuals over the long term has not been determined. We used a mouse model of chronic asymptomatic Plasmodium infection to investigate the mechanisms by which IL-10 levels are elevated during chronic asymptomatic infection. Our results show that epigenetic changes in immune genes of myeloid origin could be responsible for the elevated levels of IL-10, and that IL-10 signaling protected chronically infected mice from a severe inflammatory response induced by the infection.

immunology↗