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首页> 外文期刊>American Journal of Physiology >Downregulation of 5'-nucleotidase in rabbit heart during coronary underperfusion.
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Downregulation of 5'-nucleotidase in rabbit heart during coronary underperfusion.

机译:兔冠状动脉灌注不足时5'-核苷酸酶的下调。

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The hydrolysis of AMP to adenosine during acute coronary underperfusion is temporarily beneficial to myocardial survival yet may cause tissue injury during sustained underperfusion because of depletion of adenine nucleotides. We hypothesized that the enzyme mediating AMP hydrolysis, 5'-nucleotidase (5'-NT), is downregulated during sustained coronary underperfusion to prevent excessive loss of nucleotides. Langendorff-perfused rabbit hearts were subjected to two successive, identical 45-min periods of underperfusion (4-5% of baseline flow) separated by 20 min of reperfusion. Although coronary venous lactate efflux was comparable in the two periods, total coronary purine efflux during the second period of underperfusion was attenuated by 75%. Phosphorus nuclear magnetic resonance data showed that ATP fell 46% in the first period but fell only another 10% in the second period. Phosphocreatine levels fell comparably (75-78%) during both periods of underperfusion. Analysis using a mathematical model describing the kinetics of myocardial energetics revealed that the combined data set was best described by a lower activity of 5'-NT (52% decrease in maximal reaction velocity) during the second period of under-perfusion. Additional time course experiments showed that the decrease in 5'-NT activity was slow in onset, requiring approximately 20 min of underperfusion. The decrease in 5'-NT activity during sustained underperfusion may benefit tissue survival by limiting the depletion of myocardial adenine nucleotides. In conclusion, at the onset of coronary underperfusion, there is a high activity of 5'-NT, but later during sustained under-perfusion, 5'-NT is downregulated, resulting in decreased AMP hydrolysis to adenosine.
机译:在急性冠状动脉灌注不足期间,AMP水解为腺苷暂时有益于心肌存活,但由于腺嘌呤核苷酸的耗尽,可能在持续灌注不足期间引起组织损伤。我们假设介导AMP水解的酶5'-核苷酸酶(5'-NT)在持续性冠状动脉灌注不足过程中被下调,以防止核苷酸的过度丢失。对Langendorff灌注的兔心脏进行两次连续的相同的45分钟的灌注不足(基线血流量的4%到5%),再进行20分钟的再灌注。尽管两个时期的冠状静脉乳酸排出量相当,但第二次灌注不足期间的总冠状嘌呤排出量减少了75%。磷核磁共振数据显示,ATP在第一阶段下降了46%,而在第二阶段仅下降了10%。在两个灌注不足期中,磷酸肌酸水平相对下降(75-78%)。使用描述心肌能量的动力学的数学模型进行的分析显示,在灌注不足的第二个阶段,较低的5'-NT活性(最大反应速度降低52%)可以很好地描述组合的数据集。额外的时程实验表明,5'-NT活性的降低起效缓慢,需要大约20分钟的灌注不足。持续灌注不足过程中5'-NT活性的降低可能通过限制心肌腺嘌呤核苷酸的消耗而有益于组织存活。总之,在冠状动脉灌注不足时,5'-NT的活性很高,但是在持续的灌注不足时,5'-NT的表达下调,导致AMP水解为腺苷的程度降低。

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