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HilE represses the activity of the Salmonella virulence regulator HilD via a mechanism distinct from that of intestinal long-chain fatty acids.
Joiner, Joe D; Steinchen, Wieland; Mozer, Nick; Kronenberger, Thales; Bange, Gert; Poso, Antti; Wagner, Samuel; Hartmann, Marcus D.
Afiliación
  • Joiner JD; Department of Protein Evolution, Max Planck Institute for Biology Tübingen, Tübingen, Germany.
  • Steinchen W; Center for Synthetic Microbiology, Philipps University of Marburg, Marburg, Germany; Department of Chemistry, Philipps University of Marburg, Marburg, Germany.
  • Mozer N; Department of Protein Evolution, Max Planck Institute for Biology Tübingen, Tübingen, Germany.
  • Kronenberger T; Department of Internal Medicine VIII, University Hospital Tübingen, Tübingen, Germany; Institute of Pharmacy, Pharmaceutical/Medicinal Chemistry and Tübingen Center for Academic Drug Discovery & Development (TüCAD2), Eberhard Karls University Tübingen, Tübingen, Germany; School of Pharmacy, Facu
  • Bange G; Center for Synthetic Microbiology, Philipps University of Marburg, Marburg, Germany; Department of Chemistry, Philipps University of Marburg, Marburg, Germany.
  • Poso A; Department of Internal Medicine VIII, University Hospital Tübingen, Tübingen, Germany; Institute of Pharmacy, Pharmaceutical/Medicinal Chemistry and Tübingen Center for Academic Drug Discovery & Development (TüCAD2), Eberhard Karls University Tübingen, Tübingen, Germany; School of Pharmacy, Facu
  • Wagner S; Excellence Cluster "Controlling Microbes to Fight Infections" (CMFI), Tübingen, Germany; Interfaculty Institute of Microbiology and Infection Medicine (IMIT), University of Tübingen, Tübingen, Germany; Partner-site Tübingen, German Center for Infection Research (DZIF), Tübingen, Germany.
  • Hartmann MD; Department of Protein Evolution, Max Planck Institute for Biology Tübingen, Tübingen, Germany; Interfaculty Institute of Biochemistry, University of Tübingen, Tübingen, Germany. Electronic address: marcus.hartmann@tuebingen.mpg.de.
J Biol Chem ; 299(12): 105387, 2023 Dec.
Article en En | MEDLINE | ID: mdl-37890783
The expression of virulence factors essential for the invasion of host cells by Salmonella enterica is tightly controlled by a network of transcription regulators. The AraC/XylS transcription factor HilD is the main integration point of environmental signals into this regulatory network, with many factors affecting HilD activity. Long-chain fatty acids, which are highly abundant throughout the host intestine, directly bind to and repress HilD, acting as environmental cues to coordinate virulence gene expression. The regulatory protein HilE also negatively regulates HilD activity, through a protein-protein interaction. Both of these regulators inhibit HilD dimerization, preventing HilD from binding to target DNA. We investigated the structural basis of these mechanisms of HilD repression. Long-chain fatty acids bind to a conserved pocket in HilD, in a comparable manner to that reported for other AraC/XylS regulators, whereas HilE forms a stable heterodimer with HilD by binding to the HilD dimerization interface. Our results highlight two distinct, mutually exclusive mechanisms by which HilD activity is repressed, which could be exploited for the development of new antivirulence leads.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Salmonella typhimurium / Proteínas Bacterianas / Intestinos Límite: Animals Idioma: En Revista: J Biol Chem Año: 2023 Tipo del documento: Article País de afiliación: Alemania

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Salmonella typhimurium / Proteínas Bacterianas / Intestinos Límite: Animals Idioma: En Revista: J Biol Chem Año: 2023 Tipo del documento: Article País de afiliación: Alemania