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bacterial and host-derived glutathione are required to activate prfa

bacterial and host-derived glutathione are required to activate prfa Structural basis of promiscuous inhibition of Listeria virulence activator by oligopeptides: Cell Reports 5LRR: The Transcriptional Regulator PrfA

5LRR: The Transcriptional Regulator PrfA from Listeria Monocytogenes in complex with glutathione RCSB PDB Glutathione Provides a Source of Cysteine Essential for Intracellular Multiplication of Francisella tularensis PLOS Pathogens Listeria monocytogenes utilizes glutathione and limited inorganic sulfur compounds as sources of essential cysteine Infection and Immunity Listeria monocytogenes requires phosphotransferase systems to facilitate intracellular growth and virulence PLOS Pathogens

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bacterial and host-derived glutathione are required to activate prfa Structural basis of promiscuous inhibition of Listeria virulence activator by oligopeptides: Cell Reports 5LRR: The Transcriptional Regulator PrfA

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bacterial and host-derived glutathione are required to activate prfa Structural basis of promiscuous inhibition of Listeria virulence activator by oligopeptides: Cell Reports 5LRR: The Transcriptional Regulator PrfA

conversely, fatty acids (palmitic amide, linoleamide, stearamide, and pentadecanal) were downregulated

bacterial and host-derived glutathione are required to activate prfa Structural basis of promiscuous inhibition of Listeria virulence activator by oligopeptides: Cell Reports 5LRR: The Transcriptional Regulator PrfA

A: Store the vial and ampoule in a cool, dry place away from direct light to preserve the integrity and potency of the solution

bacterial and host-derived glutathione are required to activate prfa Structural basis of promiscuous inhibition of Listeria virulence activator by oligopeptides: Cell Reports 5LRR: The Transcriptional Regulator PrfA
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