首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Biochemical characterization of ecto-nucleotide pyrophosphatase/phosphodiesterase (E-NPP, EC 3.1.4.1) from rat heart left ventricle
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Biochemical characterization of ecto-nucleotide pyrophosphatase/phosphodiesterase (E-NPP, EC 3.1.4.1) from rat heart left ventricle

机译:大鼠心脏左心室胞外核苷酸焦磷酸酶/磷酸二酯酶的生化特性(E-NPP,EC 3.1.4.1)

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摘要

In the present study we investigate the biochemical properties of the members of NPP family in synaptosomes prepared from rat heart left ventricles. Using p-nitrophenyl-5'-thymidine monophosphate (p-Nph-5'-TMP) as substrate for E-NPPs in rat cardiac synaptosomes, we observed an alkaline pH dependence, divalent cation dependence and the K (M) value corresponded to 91.42 +/- 13.97 mu M and the maximal velocity (V (max) ) value calculated was 63.79 +/- 3.59 nmol p-nitrophenol released/min/mg of protein (mean +/- SD, n = 4). Levamisole (1 mM), was ineffective as inhibitor of p-Nph-5'-TMP hydrolysis in pH 8.9 (optimum pH for the enzyme characterized). Suramin (0.25 mM) strongly reduced the hydrolysis of p-Nph-5'-TMP by about 46%. Sodium azide (10 and 20 mM) and gadolinium chloride (0.3 and 0.5 mM), E-NTPases inhibitors, had no effects on p-Nph-5'-TMP hydrolysis. RT-PCR analysis of left ventricle demonstrated the expression of NPP2 and NPP3 enzymes, but excluded the presence of NPP1 member. By quantitative real-time PCR we identified the NPP3 as the enzyme with the highest expression in rat left ventricle. The demonstration of the presence of the E-NPP family in cardiac system, suggest that these enzymes could contribute with the fine-tuning control of the nucleotide levels at the nerve terminal endings of left ventricles that are involved in several cardiac pathologies.
机译:在本研究中,我们调查了从大鼠心脏左心室制备的突触小体中NPP家族成员的生化特性。使用对硝基苯基5'-胸苷单磷酸(p-Nph-5'-TMP)作为大鼠心脏突触小体中E-NPPs的底物,我们观察到碱性pH依赖性,二价阳离子依赖性,并且K(M)值对应于91.42 +/- 13.97μM,计算的最大速度(V(max))值为63.79 +/- 3.59 nmol对硝基苯酚释放量/ min / mg蛋白质(平均值+/- SD,n = 4)。左旋咪唑(1 mM)在pH 8.9(表征的酶的最佳pH)下不能有效抑制p-Nph-5'-TMP水解。苏拉明(0.25 mM)将p-Nph-5'-TMP的水解作用降低了约46%。 E-NTPases抑制剂叠氮化钠(10和20 mM)和氯化g(0.3和0.5 mM)对p-Nph-5'-TMP水解没有影响。左心室的RT-PCR分析表明NPP2和NPP3酶的表达,但排除了NPP1成员的存在。通过定量实时PCR,我们确定了NPP3是在大鼠左心室中表达最高的酶。 E-NPP家族在心脏系统中的存在表明,这些酶可能有助于微调控制参与多种心脏病的左心室神经末梢核苷酸水平。

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