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Biology subjects

Rastogi, S. T.

Publications and source records attributed to Rastogi, S. T..

2 recordsLinked to original sources

Ferroptosis is a Physiologic Vulnerability of Iron-Recycling Macrophages

Iron deficiency anemia affects one-third of the global human population. Paradoxically, the daily iron required to fuel the production red blood cell (RBC) and prevent anemia is provided through its recycling from senescent RBC. This is achieved by splenic red pulp macrophages (RPM) that extract iron from the heme groups of hemoglobin (Hb). How these professional erythrophagocytic macrophages prevent intracellular iron flux from inducing cell death via ferroptosis is unknown. Here we show that SPI-C, the master transcriptional regulator of the erythrophagocytic lineage, orchestrates two redundant anti-ferroptosis pathways. One supports glutathione synthesis, via NF-E2-related factor 2 (NRF2), and the other relies on bilirubin production by biliverdin reductase A (BVRA). Genetic ablation of both pathways, but not either alone, sensitizes erythrophagocytic macrophages to ferroptosis, depletes RPM and increases the severity of iron deficiency anemia in mice. These findings reveal a central physiologic role of ferroptosis in the control of macrophage function, iron homeostasis and iron-deficiency anemia. HighlightsO_LISPI-C enforces the antioxidant metabolic program of RPM. C_LIO_LISPI-C controls bilirubin production by biliverdin reductase A. C_LIO_LIBilirubin protects erythrophagocytic macrophages from ferroptosis. C_LIO_LIFerroptosis protection supports iron-recycling macrophages and limit iron deficiency anemia. C_LI

immunology↗

Biliverdin Reductase Catalytic Activity Is Essential for Malaria Resistance

Jaundice, a condition characterized by elevated levels of circulating bilirubin, is an adaptive response to malaria sustained through bilirubin production by biliverdin reductase A (BVRA). Beyond its enzymatic activity, BVRA acts as a protein kinase and as a transcription factor. To disentangle the contribution of BVRA catalytic activity over its non-canonical functions we generated BlvraG17A and BlvraE97A mice harboring G17A and E97A missense mutations in the BVRA NAD(P)H-binding domain and reductase motif, respectively. Both BlvraG17A and BlvraE97Amice presented a reduction in enzymatic activity and succumbed to malaria, otherwise non-lethal to wild-type (BlvraWT) mice. Quantification of circulating unconjugated bilirubin revealed a dose response effect whereby the mutant strains failed to reach a threshold of circulating bilirubin required to support its protective effect. These findings establish the antimalarial effect of the enzymatic activity of BVRA and define a concentration threshold of bilirubin required for malaria protection, informing therapeutic development and biomarker-guided malaria treatment strategies. Highlights- Establishment of catalytic deficient BVRA mouse mutants; - Anti-malarial effect of BVRA relies on its catalytic activity; - A minimal bilirubin threshold for parasite control; - A minimal bilirubin threshold for malaria resolution;

pathology↗