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Alterations in gene expression and microbiome composition upon calcium-sensing receptor deletion in the mouse esophagus.
Abdulnour-Nakhoul, Solange M; Kolls, Jay K; Flemington, Erik K; Ungerleider, Nathan A; Nakhoul, Hani N; Song, Kejing; Nakhoul, Nazih L.
Afiliação
  • Abdulnour-Nakhoul SM; Deming Department of Medicine, Tulane University School of Medicine, New Orleans, Louisiana, United States.
  • Kolls JK; Department of Physiology, Tulane University School of Medicine, New Orleans, Louisiana, United States.
  • Flemington EK; Deming Department of Medicine, Tulane University School of Medicine, New Orleans, Louisiana, United States.
  • Ungerleider NA; Center for Translational Research in Infection and Inflammation, Tulane University School of Medicine, New Orleans, Louisiana, United States.
  • Nakhoul HN; Department of Pathology, Tulane University, New Orleans, Louisiana, United States.
  • Song K; Department of Pathology, Tulane University, New Orleans, Louisiana, United States.
  • Nakhoul NL; Department of Pathology, Tulane University, New Orleans, Louisiana, United States.
Am J Physiol Gastrointest Liver Physiol ; 326(4): G438-G459, 2024 Apr 01.
Article em En | MEDLINE | ID: mdl-38193195
ABSTRACT
The calcium-sensing receptor (CaSR), a G protein-coupled receptor, regulates Ca2+ concentration in plasma by regulating parathyroid hormone secretion. In other tissues, it is reported to play roles in cellular differentiation and migration and in secretion and absorption. We reported previously that CaSR can be conditionally deleted in the mouse esophagus. This conditional knockout (KO) (EsoCaSR-/-) model showed a significant reduction in the levels of adherens and tight junction proteins and had a marked buildup of bacteria on the luminal esophageal surface. To further examine the role of CaSR, we used RNA sequencing to determine gene expression profiles in esophageal epithelia of control and EsoCaSR-/-mice RNA Seq data indicated upregulation of gene sets involved in DNA replication and cell cycle in EsoCaSR-/-. This is accompanied by the downregulation of gene sets involved in the innate immune response and protein homeostasis including peptide elongation and protein trafficking. Ingenuity pathway analysis (IPA) demonstrated that these genes are mapped to important biological networks including calcium and Ras homologus A (RhoA) signaling pathways. To further explore the bacterial buildup in EsoCaSR-/- esophageal tissue, 16S sequencing of the mucosal-associated bacterial microbiome was performed. Three bacterial species, g_Rodentibacter, s_Rodentibacter_unclassified, and s_Lactobacillus_hilgardi were significantly increased in EsoCaSR-/-. Furthermore, metagenomic analysis of 16S sequences indicated that pathways related to oxidative phosphorylation and metabolism were downregulated in EsoCaSR-/- tissues. These data demonstrate that CaSR impacts major pathways of cell proliferation, differentiation, cell cycle, and innate immune response in esophageal epithelium. The disruption of these pathways causes inflammation and significant modifications of the microbiome.NEW & NOTEWORTHY Calcium-sensing receptor (CaSR) plays a significant role in maintaining the barrier function of esophageal epithelium. Using RNA sequencing, we show that conditional deletion of CaSR from mouse esophagus causes upregulation of genes involved in DNA replication and cell cycle and downregulation of genes involved in the innate immune response, protein translation, and cellular protein synthesis. Pathway analysis shows disruption of signaling pathways of calcium and actin cytoskeleton. These changes caused inflammation and esophageal dysbiosis.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Cálcio / Microbiota Limite: Animals Idioma: En Revista: Am J Physiol Gastrointest Liver Physiol Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Cálcio / Microbiota Limite: Animals Idioma: En Revista: Am J Physiol Gastrointest Liver Physiol Ano de publicação: 2024 Tipo de documento: Article