Expression of adenosine receptors in human retinal pigment epithelium cells in vitro
CHINESE MEDICAL JOURNAL
Authors: Wan Wen-juan; Cui Dong-mei; Yang Xiao; Hu Jian-min; Li Chuan-xu; Hu Shou-long; Trier, Klaus; Zeng Jun-wen
Abstract
Background Adenosine receptors (ADORs) have been reported to play a role in experimental myopia. This study aimed to determine the distribution of ADORs in human retinal pigment epithelium (RPE) cells cultured in vitro. Methods Human RPE cells (cell line D407) were cultured in vitro. ADOR mRNA in APE was detected by reverse transcription polymerase chain reaction. ADOR protein expression in APE was confirmed by Western blotting analysis of cell lysates. Confocal fluorescence microscopy was used to study the subcellular distribution of ADORs. Results All four subtypes of ADORs mRNA and protein were expressed in human APE. This was confirmed by Western blotting analysis. The ADOR subtypes were differently distributed within the cells. ADORA1 was expressed in nucleus, perinucleus and cytoplasm of RPE. ADORA2A was concentrated mainly in one side of the perinucleus and cytoplasm of RPE. ADORA2B was strongly expressed in the nucleus, perinucleus and the cytoplasm, and ADORA3 was expressed weakly in the cytoplasm of APE. Conclusions ADORs are expressed in human RPE. The different distribution at the subcellular level suggests different functions of ADOR subtypes. Chin Med J 2011;124(8).1139-1144
CD73-Dependent Generation of Adenosine and Endothelial Adora2b Signaling Attenuate Diabetic Nephropathy
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY
Authors: Tak, Eunyoung; Ridyard, Douglas; Kim, Jae-Hwan; Zimmerman, Michael; Werner, Tilmann; Wang, Xiaoxin X.; Shabeka, Uladzimir; Seo, Seong-Wook; Christians, Uwe; Klawitter, Jost; Moldovan, Radu; Garcia, Gabriela; Levi, Moshe; Haase, Volker; Ravid, Katya; Eltzschig, Holger K.; Grenz, Almut
Abstract
Nucleotide phosphohydrolysis by the ecto-5-nucleotidase (CD73) is the main source for extracellular generation of adenosine. Extracellular adenosine subsequently signals through four distinct adenosine A receptors (Adora1, Adora2a, Adora2b, or Adora3). Here, we hypothesized a functional role for CD73-dependent generation and concomitant signaling of extracellular adenosine during diabetic nephropathy. CD73 transcript and protein levels were elevated in the kidneys of diabetic mice. Genetic deletion of CD73 was associated with more severe diabetic nephropathy, whereas treatment with soluble nucleotidase was therapeutic. Transcript levels of renal adenosine receptors showed a selective induction of Adora2b during diabetic nephropathy. In a transgenic reporter mouse, Adora2b expression localized to the vasculature and increased after treatment with streptozotocin. Adora2b(-/-) mice experienced more severe diabetic nephropathy, and studies in mice with tissue-specific deletion of Adora2b in tubular epithelia or vascular endothelia implicated endothelial Adora2b signaling in protection from diabetic nephropathy. Finally, treatment with a selective Adora2b agonist (BAY 60-6583) conveyed potent protection from diabetes-associated kidney disease. Taken together, these findings implicate CD73-dependent production of extracellular adenosine and endothelial Adora2b signaling in kidney protection during diabetic nephropathy.