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Insulin restores glucose inhibition of adenosine transport by increasing the expression and activity of the equilibrative nucleoside transporter 2 in human umbilical vein endothelium

Identifieur interne : 001B14 ( Istex/Corpus ); précédent : 001B13; suivant : 001B15

Insulin restores glucose inhibition of adenosine transport by increasing the expression and activity of the equilibrative nucleoside transporter 2 in human umbilical vein endothelium

Auteurs : Gonzalo Mu Oz ; Rody San Martín ; Marcelo Farías ; Luis Cea ; Andrea Vecchiola ; Paola Casanello ; Luis Sobrevia

Source :

RBID : ISTEX:06ABCF2A336D782B37EC4B3BA33F9D9932DF985E

English descriptors

Abstract

L‐Arginine transport and nitric oxide (NO) synthesis (L‐arginine/NO pathway) are stimulated by insulin, adenosine or elevated extracellular D‐glucose in human umbilical vein endothelial cells (HUVEC). Adenosine uptake via the human equilibrative nucleoside transporters 1 (hENT1) and 2 (hENT2) has been proposed as a mechanism regulating adenosine plasma concentration, and therefore its vascular effects in human umbilical veins. Thus, altered expression and/or activity of hENT1 or hENT2 could lead to abnormal physiological plasma adenosine level. We have characterized insulin effect on adenosine transport in HUVEC cultured in normal (5 mM) or high (25 mM) D‐glucose. Insulin (1 nM) increased overall adenosine transport associated with higher hENT2‐, but lower hENT1‐mediated transport in normal D‐glucose. Insulin increased hENT2 protein abundance in normal or high D‐glucose, but reduced hENT1 protein abundance in normal D‐glucose. Insulin did not alter the reduced hENT1 protein abundance, but blocked the reduced hENT1 and hENT2 mRNA expression induced by high D‐glucose. Insulin effect on hENT1 mRNA expression in normal D‐glucose was blocked by NG‐nitro‐L‐arginine methyl ester (L‐NAME, NO synthase inhibitor) and mimicked by S‐nitroso‐N‐acetyl‐L,D‐penicillamine (SNAP, NO donor). L‐NAME did not block insulin effect on hENT2 expression. In conclusion, insulin stimulation of overall adenosine transport results from increased hENT2 expression and activity via a NO‐independent mechanism. These findings could be important in hyperglycemia‐associated pathological pregnancies, such as gestational diabetes, where plasma adenosine removal by the endothelium is reduced, a condition that could alter the blood flow from the placenta to the fetus affecting fetus growth and development. J. Cell. Physiol. 209: 826–835, 2006. © 2006 Wiley‐Liss, Inc.

Url:
DOI: 10.1002/jcp.20769

Links to Exploration step

ISTEX:06ABCF2A336D782B37EC4B3BA33F9D9932DF985E

Le document en format XML

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<div type="abstract" xml:lang="en">L‐Arginine transport and nitric oxide (NO) synthesis (L‐arginine/NO pathway) are stimulated by insulin, adenosine or elevated extracellular D‐glucose in human umbilical vein endothelial cells (HUVEC). Adenosine uptake via the human equilibrative nucleoside transporters 1 (hENT1) and 2 (hENT2) has been proposed as a mechanism regulating adenosine plasma concentration, and therefore its vascular effects in human umbilical veins. Thus, altered expression and/or activity of hENT1 or hENT2 could lead to abnormal physiological plasma adenosine level. We have characterized insulin effect on adenosine transport in HUVEC cultured in normal (5 mM) or high (25 mM) D‐glucose. Insulin (1 nM) increased overall adenosine transport associated with higher hENT2‐, but lower hENT1‐mediated transport in normal D‐glucose. Insulin increased hENT2 protein abundance in normal or high D‐glucose, but reduced hENT1 protein abundance in normal D‐glucose. Insulin did not alter the reduced hENT1 protein abundance, but blocked the reduced hENT1 and hENT2 mRNA expression induced by high D‐glucose. Insulin effect on hENT1 mRNA expression in normal D‐glucose was blocked by NG‐nitro‐L‐arginine methyl ester (L‐NAME, NO synthase inhibitor) and mimicked by S‐nitroso‐N‐acetyl‐L,D‐penicillamine (SNAP, NO donor). L‐NAME did not block insulin effect on hENT2 expression. In conclusion, insulin stimulation of overall adenosine transport results from increased hENT2 expression and activity via a NO‐independent mechanism. These findings could be important in hyperglycemia‐associated pathological pregnancies, such as gestational diabetes, where plasma adenosine removal by the endothelium is reduced, a condition that could alter the blood flow from the placenta to the fetus affecting fetus growth and development. J. Cell. Physiol. 209: 826–835, 2006. © 2006 Wiley‐Liss, Inc.</div>
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<abstract>L‐Arginine transport and nitric oxide (NO) synthesis (L‐arginine/NO pathway) are stimulated by insulin, adenosine or elevated extracellular D‐glucose in human umbilical vein endothelial cells (HUVEC). Adenosine uptake via the human equilibrative nucleoside transporters 1 (hENT1) and 2 (hENT2) has been proposed as a mechanism regulating adenosine plasma concentration, and therefore its vascular effects in human umbilical veins. Thus, altered expression and/or activity of hENT1 or hENT2 could lead to abnormal physiological plasma adenosine level. We have characterized insulin effect on adenosine transport in HUVEC cultured in normal (5 mM) or high (25 mM) D‐glucose. Insulin (1 nM) increased overall adenosine transport associated with higher hENT2‐, but lower hENT1‐mediated transport in normal D‐glucose. Insulin increased hENT2 protein abundance in normal or high D‐glucose, but reduced hENT1 protein abundance in normal D‐glucose. Insulin did not alter the reduced hENT1 protein abundance, but blocked the reduced hENT1 and hENT2 mRNA expression induced by high D‐glucose. Insulin effect on hENT1 mRNA expression in normal D‐glucose was blocked by NG‐nitro‐L‐arginine methyl ester (L‐NAME, NO synthase inhibitor) and mimicked by S‐nitroso‐N‐acetyl‐L,D‐penicillamine (SNAP, NO donor). L‐NAME did not block insulin effect on hENT2 expression. In conclusion, insulin stimulation of overall adenosine transport results from increased hENT2 expression and activity via a NO‐independent mechanism. These findings could be important in hyperglycemia‐associated pathological pregnancies, such as gestational diabetes, where plasma adenosine removal by the endothelium is reduced, a condition that could alter the blood flow from the placenta to the fetus affecting fetus growth and development. J. Cell. Physiol. 209: 826–835, 2006. © 2006 Wiley‐Liss, Inc.</abstract>
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‐Arginine transport and nitric oxide (NO) synthesis (
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‐arginine/NO pathway) are stimulated by insulin, adenosine or elevated extracellular
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‐glucose in human umbilical vein endothelial cells (HUVEC). Adenosine uptake via the human equilibrative nucleoside transporters 1 (hENT1) and 2 (hENT2) has been proposed as a mechanism regulating adenosine plasma concentration, and therefore its vascular effects in human umbilical veins. Thus, altered expression and/or activity of hENT1 or hENT2 could lead to abnormal physiological plasma adenosine level. We have characterized insulin effect on adenosine transport in HUVEC cultured in normal (5 mM) or high (25 mM)
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‐glucose. Insulin (1 nM) increased overall adenosine transport associated with higher hENT2‐, but lower hENT1‐mediated transport in normal
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‐glucose. Insulin increased hENT2 protein abundance in normal or high
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‐glucose. Insulin did not alter the reduced hENT1 protein abundance, but blocked the reduced hENT1 and hENT2 mRNA expression induced by high
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‐nitro‐
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‐acetyl‐
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,
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‐penicillamine (SNAP, NO donor). L‐NAME did not block insulin effect on hENT2 expression. In conclusion, insulin stimulation of overall adenosine transport results from increased hENT2 expression and activity via a NO‐independent mechanism. These findings could be important in hyperglycemia‐associated pathological pregnancies, such as gestational diabetes, where plasma adenosine removal by the endothelium is reduced, a condition that could alter the blood flow from the placenta to the fetus affecting fetus growth and development. J. Cell. Physiol. 209: 826–835, 2006. © 2006 Wiley‐Liss, Inc.</p>
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<title type="main" xml:lang="en">Insulin restores glucose inhibition of adenosine transport by increasing the expression and activity of the equilibrative nucleoside transporter 2 in human umbilical vein endothelium</title>
<title type="short" xml:lang="en">INSULIN RESTORES GLUCOSE‐REDUCED ADENOSINE TRANSPORT</title>
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<givenNames>Rody San</givenNames>
<familyName>Martín</familyName>
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<personName>
<givenNames>Marcelo</givenNames>
<familyName>Farías</familyName>
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<personName>
<givenNames>Luis</givenNames>
<familyName>Cea</familyName>
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<personName>
<givenNames>Andrea</givenNames>
<familyName>Vecchiola</familyName>
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<givenNames>Paola</givenNames>
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<email>sobrevia@med.puc.cl</email>
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<unparsedAffiliation>Institute of Biochemistry, Universidad Austral de Chile, Chile.</unparsedAffiliation>
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<p>
<sc>L</sc>
‐Arginine transport and nitric oxide (NO) synthesis (
<sc>L</sc>
‐arginine/NO pathway) are stimulated by insulin, adenosine or elevated extracellular
<sc>D</sc>
‐glucose in human umbilical vein endothelial cells (HUVEC). Adenosine uptake via the human equilibrative nucleoside transporters 1 (hENT1) and 2 (hENT2) has been proposed as a mechanism regulating adenosine plasma concentration, and therefore its vascular effects in human umbilical veins. Thus, altered expression and/or activity of hENT1 or hENT2 could lead to abnormal physiological plasma adenosine level. We have characterized insulin effect on adenosine transport in HUVEC cultured in normal (5 mM) or high (25 mM)
<sc>D</sc>
‐glucose. Insulin (1 nM) increased overall adenosine transport associated with higher hENT2‐, but lower hENT1‐mediated transport in normal
<sc>D</sc>
‐glucose. Insulin increased hENT2 protein abundance in normal or high
<sc>D</sc>
‐glucose, but reduced hENT1 protein abundance in normal
<sc>D</sc>
‐glucose. Insulin did not alter the reduced hENT1 protein abundance, but blocked the reduced hENT1 and hENT2 mRNA expression induced by high
<sc>D</sc>
‐glucose. Insulin effect on hENT1 mRNA expression in normal
<sc>D</sc>
‐glucose was blocked by
<i>N</i>
<sup>G</sup>
‐nitro‐
<sc>L</sc>
‐arginine methyl ester (L‐NAME, NO synthase inhibitor) and mimicked by
<i>S</i>
‐nitroso‐
<i>N</i>
‐acetyl‐
<sc>L</sc>
,
<sc>D</sc>
‐penicillamine (SNAP, NO donor). L‐NAME did not block insulin effect on hENT2 expression. In conclusion, insulin stimulation of overall adenosine transport results from increased hENT2 expression and activity via a NO‐independent mechanism. These findings could be important in hyperglycemia‐associated pathological pregnancies, such as gestational diabetes, where plasma adenosine removal by the endothelium is reduced, a condition that could alter the blood flow from the placenta to the fetus affecting fetus growth and development. J. Cell. Physiol. 209: 826–835, 2006. © 2006 Wiley‐Liss, Inc.</p>
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<title>Insulin restores glucose inhibition of adenosine transport by increasing the expression and activity of the equilibrative nucleoside transporter 2 in human umbilical vein endothelium</title>
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<name type="personal">
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<affiliation>Cellular and Molecular Physiology Laboratory (CMPL), Medical Research Centre (CIM), Department of Obstetrics and Gynaecology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile</affiliation>
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<affiliation>Cellular and Molecular Physiology Laboratory (CMPL), Medical Research Centre (CIM), Department of Obstetrics and Gynaecology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile</affiliation>
<affiliation>Current Address: Institute of Biochemistry, Universidad Austral de Chile, Chile.</affiliation>
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<affiliation>Cellular and Molecular Physiology Laboratory (CMPL), Medical Research Centre (CIM), Department of Obstetrics and Gynaecology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile</affiliation>
<affiliation>Perinatology Research Laboratory (PRL), Medical Research Centre (CIM), Department of Obstetrics and Gynaecology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile</affiliation>
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<name type="personal">
<namePart type="given">Luis</namePart>
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<roleTerm type="text">author</roleTerm>
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<name type="personal">
<namePart type="given">Andrea</namePart>
<namePart type="family">Vecchiola</namePart>
<affiliation>Cellular and Molecular Physiology Laboratory (CMPL), Medical Research Centre (CIM), Department of Obstetrics and Gynaecology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile</affiliation>
<affiliation>Perinatology Research Laboratory (PRL), Medical Research Centre (CIM), Department of Obstetrics and Gynaecology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile</affiliation>
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<roleTerm type="text">author</roleTerm>
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<name type="personal">
<namePart type="given">Paola</namePart>
<namePart type="family">Casanello</namePart>
<affiliation>Perinatology Research Laboratory (PRL), Medical Research Centre (CIM), Department of Obstetrics and Gynaecology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile</affiliation>
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<roleTerm type="text">author</roleTerm>
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<name type="personal">
<namePart type="given">Luis</namePart>
<namePart type="family">Sobrevia</namePart>
<affiliation>Cellular and Molecular Physiology Laboratory (CMPL), Medical Research Centre (CIM), Department of Obstetrics and Gynaecology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile</affiliation>
<affiliation>E-mail: sobrevia@med.puc.cl</affiliation>
<affiliation>Correspondence address: Cellular and Molecular Physiology Laboratory (CMPL), Department of Obstetrics and Gynaecology, Faculty of Medicine, Pontificia Universidad Católica de Chile, P.O. Box 114‐D, Santiago, Chile.</affiliation>
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<abstract lang="en">L‐Arginine transport and nitric oxide (NO) synthesis (L‐arginine/NO pathway) are stimulated by insulin, adenosine or elevated extracellular D‐glucose in human umbilical vein endothelial cells (HUVEC). Adenosine uptake via the human equilibrative nucleoside transporters 1 (hENT1) and 2 (hENT2) has been proposed as a mechanism regulating adenosine plasma concentration, and therefore its vascular effects in human umbilical veins. Thus, altered expression and/or activity of hENT1 or hENT2 could lead to abnormal physiological plasma adenosine level. We have characterized insulin effect on adenosine transport in HUVEC cultured in normal (5 mM) or high (25 mM) D‐glucose. Insulin (1 nM) increased overall adenosine transport associated with higher hENT2‐, but lower hENT1‐mediated transport in normal D‐glucose. Insulin increased hENT2 protein abundance in normal or high D‐glucose, but reduced hENT1 protein abundance in normal D‐glucose. Insulin did not alter the reduced hENT1 protein abundance, but blocked the reduced hENT1 and hENT2 mRNA expression induced by high D‐glucose. Insulin effect on hENT1 mRNA expression in normal D‐glucose was blocked by NG‐nitro‐L‐arginine methyl ester (L‐NAME, NO synthase inhibitor) and mimicked by S‐nitroso‐N‐acetyl‐L,D‐penicillamine (SNAP, NO donor). L‐NAME did not block insulin effect on hENT2 expression. In conclusion, insulin stimulation of overall adenosine transport results from increased hENT2 expression and activity via a NO‐independent mechanism. These findings could be important in hyperglycemia‐associated pathological pregnancies, such as gestational diabetes, where plasma adenosine removal by the endothelium is reduced, a condition that could alter the blood flow from the placenta to the fetus affecting fetus growth and development. J. Cell. Physiol. 209: 826–835, 2006. © 2006 Wiley‐Liss, Inc.</abstract>
<note type="funding">Fondo Nacional de Desarrollo Científico y Tecnológico (FONDECYT) - No. 1030781; No. 1030607; </note>
<note type="funding">Fundación Andes (Chile) - No. C‐14060; </note>
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