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Mycobacteria: Bugs and Bugbears (Two steps forward and one step back)Characterization of the Mycobacterium tuberculosis 4-diphosphocytidyl-2-C-methyl-D-erythritol synthase: potential for drug developmentMycobacterium tuberculosis responds to chloride and pH as synergistic cues to the immune status of its host cellDiscovery of Novel Oral Protein Synthesis Inhibitors of Mycobacterium tuberculosis That Target Leucyl-tRNA SynthetaseThe structure of Mycobacteria 2C-methyl-D-erythritol-2,4-cyclodiphosphate synthase, an essential enzyme, provides a platform for drug discoveryStructural, biochemical, and in vivo investigations of the threonine synthase from Mycobacterium tuberculosisCharacterization of Active Site Structure in CYP121: A CYTOCHROME P450 ESSENTIAL FOR VIABILITY OF MYCOBACTERIUM TUBERCULOSIS H37RvSensitive detection of gene expression in mycobacteria under replicating and non-replicating conditions using optimized far-red reportersOptimisation of bioluminescent reporters for use with mycobacteriaThe promoter of Rv0560c is induced by salicylate and structurally-related compounds in Mycobacterium tuberculosisA dual read-out assay to evaluate the potency of compounds active against Mycobacterium tuberculosisThe senX3-regX3 two-component regulatory system of Mycobacterium tuberculosis is required for virulenceFunctional analysis of GlnE, an essential adenylyl transferase in Mycobacterium tuberculosisThe common aromatic amino acid biosynthesis pathway is essential in Mycobacterium tuberculosisExpression of Mycobacterium tuberculosis Rv1991c using an arabinose-inducible promoter demonstrates its role as a toxinIdentification of the Mycobacterium tuberculosis GlnE promoter and its response to nitrogen availabilityThe nonmevalonate pathway of isoprenoid biosynthesis in Mycobacterium tuberculosis is essential and transcriptionally regulated by DxsThe critical role of embC in Mycobacterium tuberculosisThe missing piece of the type II fatty acid synthase system from Mycobacterium tuberculosisThe two chorismate mutases from both Mycobacterium tuberculosis and Mycobacterium smegmatis: biochemical analysis and limited regulation of promoter activity by aromatic amino acidsThe role of GlnD in ammonia assimilation in Mycobacterium tuberculosisFunctional demonstration of reverse transsulfuration in the Mycobacterium tuberculosis complex reveals that methionine is the preferred sulfur source for pathogenic MycobacteriaRapid recombination screening to test gene essentiality demonstrates that pyrH is essential in Mycobacterium tuberculosisRevisiting the assignment of Rv0241c to fatty acid synthase type II of Mycobacterium tuberculosisEmbA is an essential arabinosyltransferase in Mycobacterium tuberculosisHemZ is essential for heme biosynthesis in Mycobacterium tuberculosisInositol monophosphate phosphatase genes of Mycobacterium tuberculosisIdentification of new drug targets and resistance mechanisms in Mycobacterium tuberculosisA high-throughput screen against pantothenate synthetase (PanC) identifies 3-biphenyl-4-cyanopyrrole-2-carboxylic acids as a new class of inhibitor with activity against Mycobacterium tuberculosisThe dUTPase enzyme is essential in Mycobacterium smegmatisControl of CydB and GltA1 expression by the SenX3 RegX3 two component regulatory system of Mycobacterium tuberculosisImidazoles Induce Reactive Oxygen Species in Mycobacterium tuberculosis Which Is Not Associated with Cell Death.Two-Component Regulatory Systems of Mycobacteria.Nitazoxanide is active against Mycobacterium leprae.Mycobacterium tuberculosis Rv0560c is not essential for growth in vitro or in macrophages.Antituberculosis drugs: reducing efflux=increasing activity.Electroporation of mycobacteria.Mycobacteria. Bugs and bugbears.A high content microscopy assay to determine drug activity against intracellular Mycobacterium tuberculosis.Targeting mycobacterial proteolytic complexes with natural products.
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P1006
P214
P1006
P1053
A-8912-2014
P106
P21
P214
P2798
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P3829
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P734
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lccn-n98801578