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镁激活的腺苷在完整灌注心脏中的形成:高镁血症期间胞外5'-核苷酸酶占主导地位。

Magnesium activated adenosine formation in intact perfused heart: predominance of ecto 5'-nucleotidase during hypermagnesemia.

作者信息

Mallet R T, Sun J, Fan W L, Kang Y H, Bünger R

机构信息

Department of Physiology, University of North Texas Health Science Center, Fort Worth 76107-2699, USA.

出版信息

Biochim Biophys Acta. 1996 Jun 4;1290(2):165-76. doi: 10.1016/0304-4165(96)00016-5.

Abstract

Magnesium ion is an allosteric effector of 5'-nucleotidase and thus activates adenosine production from AMP. Two distinct 5'-nucleotidase systems, the membrane-bound ecto and the soluble cytosolic isoforms, exist in mammalian myocardium. The aim of this study was to delineate the contributions of the ecto vs. cytosolic isoforms to Mg2+-stimulated cardiac purine nucleoside formation and release. Isolated guinea pig hearts were retrogradely perfused at their physiological aortic pressure with Krebs-Henseleit bicarbonate buffer fortified with 10 mM glucose. AMP and the adenylate degradatives adenosine and inosine were measured in coronary venous effluent and in epicardial transudate, which was sampled to estimate concentrations of adenylate degradatives in the interstitium. When perfusate Mg2+ was increased from 0.6 to 6 mM, coronary vascular resistance and spontaneous heart rate fell, and steady-state coronary venous release of adenosine + inosine rose severalfold. Cytosolic free magnesium, as estimated by 31P-NMR after 15 min of perfusion with 6 mM Mg2+ or from chemically measured indicator metabolites after 30 min, rose 60 and 144% respectively (P < 0.05). Excess Mg2+ stimulated purine nucleoside release nearly threefold in coronary venous effluent and four- to sevenfold in epicardial transudate. 50 microM, alpha,beta-methylene adenosine 5'-diphosphate (AOPCP), a selective inhibitor of ecto 5'-nucleotidase, elevated interstitial AMP concentration tenfold, did not attenuate basal nucleoside release, but completely inhibited Mg2+-stimulated coronary venous purine nucleoside release and blunted Mg2+-stimulated interstitial purine nucleoside formation by 69%. During perfusion with exogenous 1 microM [8-14C]AMP, excess perfusate MgCl2 increased [14C]adenosine release by 63% in coronary effluent and 133% in epicardial transudate. AOPCP decreased baseline [14C]adenosine release in coronary effluent and epicardial transudate by 85-90%, caused equilibration of arterial and epicardial AMP, and attenuated MgCl2 activation of p[14C]adenosine formation by approx. 75%, in both the vascular and interstitial compartments. Intramyocytic concentrations of allosteric regulators of the cytosolic 5'-nucleotidases were evaluated in stop-frozen myocardium. Excess magnesium did not appreciably alter intracellular pH and ATP concentration, but lowered free cytosolic ADP and AMP concentrations by 50 and 70%, respectively. A simplified model of compartmentalized adenosine metabolism is proposed in which magnesium ion-activated cardiac purine release originates predominantly from the ecto 5'-nucleotidase; magnesium ion stimulation of metabolic flux through the cytosolic isoforms was constrained by concomitant reductions in intracellular AMP substrate and allosteric activator ADP. Magnesium ion-enhanced adenosine formation by 5'-nucleotidase could contribute to the known cardioprotective effects of this clinically used cation.

摘要

镁离子是5'-核苷酸酶的变构效应剂,因此可激活由AMP生成腺苷的过程。哺乳动物心肌中存在两种不同的5'-核苷酸酶系统,即膜结合的胞外同工型和可溶性胞质同工型。本研究的目的是阐明胞外同工型与胞质同工型对镁离子刺激的心脏嘌呤核苷形成和释放的作用。分离的豚鼠心脏在其生理主动脉压力下用添加了10 mM葡萄糖的 Krebs-Henseleit 碳酸氢盐缓冲液进行逆行灌注。在冠状静脉流出液和心外膜渗出液中测量AMP以及腺苷酸降解产物腺苷和肌苷,对心外膜渗出液进行采样以估计间质中腺苷酸降解产物的浓度。当灌注液中的镁离子从0.6 mM增加到6 mM时,冠状血管阻力和自发心率下降,腺苷 + 肌苷的稳态冠状静脉释放量增加了几倍。灌注6 mM镁离子15分钟后通过31P-NMR估计的胞质游离镁,或灌注30分钟后通过化学测量的指示代谢物估计的胞质游离镁,分别升高了60%和144%(P < 0.05)。过量的镁离子使冠状静脉流出液中的嘌呤核苷释放增加近三倍,在心外膜渗出液中增加四至七倍。50 μM的α,β-亚甲基腺苷5'-二磷酸(AOPCP),一种胞外5'-核苷酸酶的选择性抑制剂,使间质AMP浓度升高了十倍,并未减弱基础核苷释放,但完全抑制了镁离子刺激的冠状静脉嘌呤核苷释放,并使镁离子刺激的间质嘌呤核苷形成减少了69%。在灌注外源性1 μM [8-14C]AMP期间,过量的灌注液MgCl2使冠状流出液中的[14C]腺苷释放增加了63%,在心外膜渗出液中增加了

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