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Speer, T.

Publications and source records attributed to Speer, T..

2 recordsLinked to original sources

The transaminase-omega-amidase pathway is a redox switch in glutamine metabolism that generates alpha-ketoglutarate

Oxidative stress is caused by short-lived molecules and metabolic changes belong to the fastest cellular responses. Here we studied how the endothelial cell metabolome reacts to acute oxidative challenges (menadione or H2O2) to identify redox-sensitive metabolic enzymes. H2O2 selectively increased -ketoglutaramate (KGM), a largely uncharacterized metabolite produced by glutamine transamination and a yet unrecognized intermediate of endothelial glutamine catabolism. The enzyme nitrilase-like 2 {omega}-amidase (NIT2) converts KGM to -ketoglutarate (KG). Reversible oxidation of specific cysteine in NIT2 by H2O2 inhibited its catalytic activity. Furthermore, a variant in the NIT2 gene that decreases its expression is associated with high plasma KGM level in humans. Endothelial-specific knockout mice of NIT2 exhibited increased levels of KGM and impaired angiogenesis. Knockout of NIT2 impaired endothelial cell proliferation and sprouting and induced senescence. In conclusion, we show that the glutamine transaminase-{omega}-amidase pathway is a metabolic switch in which NIT2 is the redox-sensitive enzyme. The pathway is modulated in humans and functionally important for endothelial glutamine metabolism.

physiology↗

Membrane-bound Interleukin-1α mediates leukocyte adhesion during atherogenesis

BackgroundThe interleukin-1 (IL-1) family and the NLR family pyrin domain-containing 3 (NLRP3) inflammasome contribute to atherogenesis but the underlying mechanism are incompletely understood. Unlike IL-1{beta}, IL-1 is not dependent on the NLRP3 inflammasome to exert its pro-inflammatory effects. Here, a non-genetic model was applied to characterize the role of IL-1, IL-1{beta} and NLRP3 for the pathogenesis of atherosclerosis. MethodsAtherogenesis was induced by gain-of-function PCSK9-AAV8 mutant viruses and feeding of a high-fat western diet (WTD) for 12 weeks in C57Bl6/J wildtype mice (control) and in Il1a-/-, Nlrp3-/-, and Il1b-/- mice. ResultsIl1a-/- mice showed reduced atherosclerotic plaque area in the aortic root with lower lipid accumulation, while no difference was observed between wildtype, Nlrp3-/- and Il1b-/- mice. Serum proteomic analysis showed a reduction of pro-inflammatory cytokines (e.g. IL-1{beta}, IL-6) in Il1a-/- as well as in Nlrp3-/- and Il1b-/- mice. Bone marrow dendritic cells (BMDC) of WT, Nlrp3-/- and Il1b-/- mice and primary human monocytes showed translocation of IL-1 to the plasma membrane (csIL-1) upon stimulation with LPS. The translocation of IL-1 to the cell surface was regulated by myristoylation and increased in mice with hypercholesterolemia. CsIL-1 and IL1R1 protein-protein interaction on endothelial cells induced VCAM1 expression and monocyte adhesion, which was abrogated by the administration of neutralizing antibodies against IL-1 and IL1R1. ConclusionsIl1a-/- mice, but not Nlrp3-/- or Il1b-/- mice, are protected from atherosclerosis after induction of hypercholesterolemia independent of circulating cytokines. Myristoylation and translocation of IL-1 to the cell surface in myeloid cells facilitates leukocyte adhesion and contributes to the development of atherosclerosis. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=114 SRC="FIGDIR/small/543077v1_ufig1.gif" ALT="Figure 1"> View larger version (47K): org.highwire.dtl.DTLVardef@c54814org.highwire.dtl.DTLVardef@1ff1971org.highwire.dtl.DTLVardef@df5605org.highwire.dtl.DTLVardef@889a1a_HPS_FORMAT_FIGEXP M_FIG O_FLOATNOGraphical abstract.C_FLOATNO The role of cell-surface (cs) IL-1a in the initiation of atherosclerosis. C_FIG

immunology↗