Proton-sensing ovarian cancer G-protein coupled receptor (OGR1) plays an important role in pH homeostasis. Acidosis occurs at sites of intestinal inflammation and can induce endoplasmic reticulum (ER) stress and the unfolded protein response (UPR), an evolutionary mechanism that enables cells to cope with stressful conditions. ER stress activates autophagy, and both play important roles in gut homeostasis and contribute to the pathogenesis of inflammatory bowel disease (IBD). Using a human intestinal epithelial cell model, we investigated whether our previously observed protective effects of OGR1 deficiency in experimental colitis are associated with a differential regulation of ER stress, the UPR and autophagy. Caco-2 cells stably overexpr...
Intestinal inflammation is a burdening disease that may occur due to an aberrative immune response t...
Background and Aims: Local extracellular acidification is associated with several conditions, such a...
BACKGROUND AND AIMS: During active inflammation tissue intraluminal intestinal pH is decreased in pa...
Proton-sensing ovarian cancer G-protein coupled receptor (OGR1) plays an important role in pH homeos...
Local extracellular acidification occurs at sites of inflammation. Proton-sensing ovarian cancer G-p...
Background: A novel family of proton sensing G-protein coupled receptors (GPCRs), including ovaria...
BACKGROUND & AIMS A novel family of proton-sensing G-protein-coupled receptors, including ovarian ca...
BACKGROUND A novel family of proton-sensing G protein-coupled receptors, including OGR1, GPR4, and T...
Background & Aims: A novel family of proton-sensing G-proteinâcoupled receptors, including ovarian c...
Background & Aims OGR1 (Ovarian Cancer G protein-coupled receptor 1, GPR68), is a proton-sensing re...
Background & AimsA novel family of proton-sensing G-protein–coupled receptors, including ovarian can...
The pH-sensing receptor ovarian cancer G protein-coupled receptor 1 (OGR1; GPR68) is expressed in th...
Background: A novel family of proton-sensing G protein-coupled receptors, including OGR1, GPR4, and ...
The estrogen-related receptor alpha (ERR?) is a primary regulator of mitochondrial energy metabolism...
Background and Aims: pH-sensing ovarian cancer G-protein coupled receptor-1 [OGR1/GPR68] is regulate...
Intestinal inflammation is a burdening disease that may occur due to an aberrative immune response t...
Background and Aims: Local extracellular acidification is associated with several conditions, such a...
BACKGROUND AND AIMS: During active inflammation tissue intraluminal intestinal pH is decreased in pa...
Proton-sensing ovarian cancer G-protein coupled receptor (OGR1) plays an important role in pH homeos...
Local extracellular acidification occurs at sites of inflammation. Proton-sensing ovarian cancer G-p...
Background: A novel family of proton sensing G-protein coupled receptors (GPCRs), including ovaria...
BACKGROUND & AIMS A novel family of proton-sensing G-protein-coupled receptors, including ovarian ca...
BACKGROUND A novel family of proton-sensing G protein-coupled receptors, including OGR1, GPR4, and T...
Background & Aims: A novel family of proton-sensing G-proteinâcoupled receptors, including ovarian c...
Background & Aims OGR1 (Ovarian Cancer G protein-coupled receptor 1, GPR68), is a proton-sensing re...
Background & AimsA novel family of proton-sensing G-protein–coupled receptors, including ovarian can...
The pH-sensing receptor ovarian cancer G protein-coupled receptor 1 (OGR1; GPR68) is expressed in th...
Background: A novel family of proton-sensing G protein-coupled receptors, including OGR1, GPR4, and ...
The estrogen-related receptor alpha (ERR?) is a primary regulator of mitochondrial energy metabolism...
Background and Aims: pH-sensing ovarian cancer G-protein coupled receptor-1 [OGR1/GPR68] is regulate...
Intestinal inflammation is a burdening disease that may occur due to an aberrative immune response t...
Background and Aims: Local extracellular acidification is associated with several conditions, such a...
BACKGROUND AND AIMS: During active inflammation tissue intraluminal intestinal pH is decreased in pa...