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1.
Mol Biol Cell ; 29(22): 2687-2699, 2018 11 01.
Article in English | MEDLINE | ID: mdl-30188771

ABSTRACT

Extracellular adenosine signaling is established as a protective component in mucosal inflammatory responses. The sources of extracellular adenosine include enzymatic processing from nucleotides, such as ATP and AMP, that can be liberated from a variety of cell types, including infiltrating leukocytes. Here we demonstrate that activated human neutrophils are a source of diadenosine triphosphate (Ap3A), providing an additional source of nucleotides during inflammation. Profiling murine enteroids and intestinal epithelial cell lines revealed that intestinal epithelia prominently express apical and lateral ectonucleotide pyrophosphatase/phosphodiesterase-1 (ENPP1), a member of the ENPP family of enzymes that metabolize diadenosine phosphates, especially Ap3A. Extensions of these studies demonstrated that intestinal epithelia metabolize Ap3A to ADP and AMP, which are further metabolized to adenosine and made available to activate surface adenosine receptors. Using loss and gain of ENPP1 approaches, we revealed that ENPP1 coordinates epithelial barrier formation and promotes epithelial wound healing responses. These studies demonstrate the cooperative metabolism between Ap3A and ENPP1 function to provide a significant source of adenosine, subserving its role in inflammatory resolution.


Subject(s)
Adenosine/metabolism , Epithelial Cells/metabolism , Neutrophils/metabolism , Nucleotides/metabolism , Phosphoric Diester Hydrolases/metabolism , Polyphosphates/metabolism , Pyrophosphatases/metabolism , Signal Transduction , Cell Movement , Dinucleoside Phosphates/chemistry , Dinucleoside Phosphates/metabolism , Humans , Intestines/cytology , Nuclear Receptor Subfamily 4, Group A, Member 2/metabolism , Tight Junction Proteins/metabolism , Tight Junctions/metabolism , Transcription, Genetic , Wound Healing
2.
Infect Immun ; 85(10)2017 10.
Article in English | MEDLINE | ID: mdl-28717030

ABSTRACT

Ecto-5'-nucleotidase (CD73) is expressed abundantly on the apical surface of intestinal epithelial cells (IECs) and functions as the terminal enzyme in the generation of extracellular adenosine. Previous work demonstrated that adenosine signaling in IECs results in a number of tissue-protective effects during inflammation; however, a rationale for its apical expression has been lacking. We hypothesized that the highly polarized expression of CD73 is indicative of an important role for extracellular adenosine as a mediator of host-microbe interactions. We show that adenosine harbors bacteriostatic activity against Salmonella enterica serovar Typhimurium that is not shared by the related purine metabolite 5'-AMP, inosine, or hypoxanthine. Analysis of Salmonella colonization in IEC-specific CD73 knockout mice (CD73f/fVillinCre ) revealed a nearly 10-fold increase in colonization compared to that in controls. Despite the increased luminal colonization by Salmonella, CD73f/fVillinCre mice were protected against Salmonella colitis and showed reduced Salmonella burdens in viscera, suggesting that adenosine promotes dissemination. The knockdown of CD73 expression in cultured IECs resulted in dramatic defects in intraepithelial localization and replication as well as defective transepithelial translocation by Salmonella In conclusion, we define a novel antimicrobial activity of adenosine in the gastrointestinal tract and unveil an important role for adenosine as a regulator of host-microbe interactions. These findings have broad implications for the development of new therapeutic agents for infectious disease.


Subject(s)
5'-Nucleotidase/metabolism , Adenosine/metabolism , Host-Pathogen Interactions , Intestinal Mucosa/microbiology , Salmonella enterica/growth & development , 5'-Nucleotidase/deficiency , 5'-Nucleotidase/genetics , Adenosine/immunology , Animals , Bacterial Load , Cell Line , Epithelial Cells/microbiology , Inflammation , Mice , Mice, Knockout , Nucleotidases/metabolism , Salmonella enterica/physiology , Salmonella typhimurium/growth & development , Salmonella typhimurium/physiology , Signal Transduction
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