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One or more keywords matched the following properties of Ouellet, Hugues
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overview Functional metabolomics and host-Mtb interactions studies My research focus is on the role of cholesterol for the pathogenesis of Mycobacterium tuberculosis (Mtb), the cause of approximately 2 million deaths per year worldwide. The long-term goal of this project is to determine whether cholesterol catabolism is a new therapeutic target to treat and control TB. My laboratory is interested in deciphering the cholesterol degradation pathway and identifying the oxidoreductases essential for the initial infection, as well as persistent infection. Isotopically-labeled cholesterol and high resolution LC/MS will be employed as tools to profile cholesterol-derived metabolome of knockout Mtb stains for putative cholesterol catabolic genes. The biochemical characterization of targeted enzymes will help to better understand their role during infection and evaluate their potential as therapeutic targets. The second area of research in our laboratory is to elucidate the roles of the truncated hemoglobins, HbN and HbO, for infectivity and persistence of Mycobacterium tuberculosis. HbN, which is expressed in stationary phase, is a very efficient NO-dioxygenase that was shown to protect cellular respiration against inhibition by nitric oxide in the attenuated M. bovis BCG vaccine strain. On the other hand, HbO, which is constitutively expressed, has a very high for gaseous ligands (O2, CO and NO) and appeared to be toxic when over-expressed. Collectively, these observations suggest that these two hemoglobins play different and important roles in the biology of Mycobacterium tuberculosis.
One or more keywords matched the following items that are connected to Ouellet, Hugues
Item TypeName
Academic Article A TyrCD1/TrpG8 hydrogen bond network and a TyrB10TyrCD1 covalent link shape the heme distal site of Mycobacterium tuberculosis hemoglobin O.
Academic Article Reactions of Mycobacterium tuberculosis truncated hemoglobin O with ligands reveal a novel ligand-inclusive hydrogen bond network.
Academic Article NO binding induced conformational changes in a truncated hemoglobin from Mycobacterium tuberculosis.
Academic Article Unique ligand-protein interactions in a new truncated hemoglobin from Mycobacterium tuberculosis.
Academic Article Truncated hemoglobin HbN protects Mycobacterium bovis from nitric oxide.
Academic Article Truncated hemoglobins and nitric oxide action.
Academic Article Cyanide binding to truncated hemoglobins: a crystallographic and kinetic study.
Academic Article Structural bases for heme binding and diatomic ligand recognition in truncated hemoglobins.
Academic Article Reaction of Mycobacterium tuberculosis truncated hemoglobin O with hydrogen peroxide: evidence for peroxidatic activity and formation of protein-based radicals.
Academic Article The roles of Tyr(CD1) and Trp(G8) in Mycobacterium tuberculosis truncated hemoglobin O in ligand binding and on the heme distal site architecture.
Concept Hemoglobins
Concept Truncated Hemoglobins
Academic Article Heme-ligand tunneling in group I truncated hemoglobins.
Academic Article Viscosity-dependent relaxation significantly modulates the kinetics of CO recombination in the truncated hemoglobin TrHbN from Mycobacterium tuberculosis.
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  • Hemoglobins
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