Literature DB >> 18767039

Mechanisms of induction of adenosine receptor genes and its functional significance.

Cynthia St Hilaire1, Shannon H Carroll, Hongjie Chen, Katya Ravid.   

Abstract

Adenosine is a metabolite generated and released from cells, particularly under injury or stress. It elicits protective or damaging responses via signaling through the adenosine receptors, including the adenylyl cyclase inhibitory A(1) and A(3), and the adenylyl cyclase stimulatory A(2A) and A(2B). Multiple adenosine receptor types, including stimulatory and inhibitory, can be found in the same cell, suggesting that a careful balance of adenosine receptor expression in a particular cell is necessary for a specific adenosine-induced response. This balance could be controlled by differential expression of the adenosine receptor genes under different stimuli. Here, we have reviewed an array of studies that have characterized basal or induced expression of the adenosine receptors and common as well as distinct mechanisms of effect, in hopes that ongoing studies on this topic will further elucidate detailed mechanisms of adenosine receptor regulation, leading to potential therapeutic applications. (c) 2008 Wiley-Liss, Inc.

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Year:  2009        PMID: 18767039      PMCID: PMC3265330          DOI: 10.1002/jcp.21579

Source DB:  PubMed          Journal:  J Cell Physiol        ISSN: 0021-9541            Impact factor:   6.384


  157 in total

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3.  Tissue distribution of adenosine receptor mRNAs in the rat.

Authors:  A K Dixon; A K Gubitz; D J Sirinathsinghji; P J Richardson; T C Freeman
Journal:  Br J Pharmacol       Date:  1996-07       Impact factor: 8.739

4.  Chronic exposure to adenosine receptor agonists and antagonists reciprocally regulates the A1 adenosine receptor-adenylyl cyclase system in cerebellar granule cells.

Authors:  B D Hettinger-Smith; M Leid; T F Murray
Journal:  J Neurochem       Date:  1996-11       Impact factor: 5.372

5.  Transgenic A1 adenosine receptor overexpression increases myocardial resistance to ischemia.

Authors:  G P Matherne; J Linden; A M Byford; N S Gauthier; J P Headrick
Journal:  Proc Natl Acad Sci U S A       Date:  1997-06-10       Impact factor: 11.205

6.  Short term desensitization of the A1 adenosine receptors in DDT1MF-2 cells.

Authors:  Z Nie; Y Mei; V Ramkumar
Journal:  Mol Pharmacol       Date:  1997-09       Impact factor: 4.436

7.  The chicken adenosine receptor 2B gene is regulated by v-myb.

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8.  Hypoxia-induced inhibition of adenosine kinase potentiates cardiac adenosine release.

Authors:  U K Decking; G Schlieper; K Kroll; J Schrader
Journal:  Circ Res       Date:  1997-08       Impact factor: 17.367

9.  Identification and characterization of CD39/vascular ATP diphosphohydrolase.

Authors:  E Kaczmarek; K Koziak; J Sévigny; J B Siegel; J Anrather; A R Beaudoin; F H Bach; S C Robson
Journal:  J Biol Chem       Date:  1996-12-20       Impact factor: 5.157

10.  CD39 is an ecto-(Ca2+,Mg2+)-apyrase.

Authors:  T F Wang; G Guidotti
Journal:  J Biol Chem       Date:  1996-04-26       Impact factor: 5.157

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  26 in total

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Review 5.  The resurgence of A2B adenosine receptor signaling.

Authors:  Carol M Aherne; Emily M Kewley; Holger K Eltzschig
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6.  In Vivo Evaluation of A1 Adenosine Agonists as Novel Anticonvulsant Medical Countermeasures to Nerve Agent Intoxication in a Rat Soman Seizure Model.

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8.  Increased activity of TNAP compensates for reduced adenosine production and promotes ectopic calcification in the genetic disease ACDC.

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Review 10.  Regulation of atherosclerosis and associated risk factors by adenosine and adenosine receptors.

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