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腺嘌呤/核糖供应增加腺苷生成并保护腺苷激酶抑制的心肌细胞中的ATP池。

Adenine/ribose supply increases adenosine production and protects ATP pool in adenosine kinase-inhibited cardiac cells.

作者信息

Smolenski R T, Kalsi K K, Zych M, Kochan Z, Yacoub M H

机构信息

Heart Science Centre, National Heart and Lung Institute at Harefield Hospital, Harefield, UK.

出版信息

J Mol Cell Cardiol. 1998 Mar;30(3):673-83. doi: 10.1006/jmcc.1997.0635.

Abstract

The objective of the present study was to establish the optimal combination of inhibitors of adenosine metabolism and nucleotide precursors resulting in long-term increase in endogenous adenosine concentration without adverse metabolic consequences in non-ischemic cardiomyocytes and endothelial cells. Cardiomyocytes and endothelial cells were isolated after collagenase digestion of the rat heart. Freshly isolated cardiac myocytes or cultured endothelial cells were incubated for up to 8 h with no inhibitors or substrates or with various combinations of adenosine deaminase inhibitor: 5 micron M erythro-9(2-hydroxy-3-nonyl)adenine (EHNA), adenosine kinase inhibitors: 10 micro M 5'-iodotubercidin (ITu) or 10 micro M 5'-aminoadenosine (AA) and nucleotide precursors: 100 micro M adenine, 2.5 mm ribose and 5 mm inorganic phosphate. Nucleotide, nucleoside and base concentrations were evaluated at the end of the incubation by HPLC in cardiomyocyte or endothelial cells extracts and in incubation media. Adenosine content in cardiomyocyte suspension was enhanced after 3 h incubation in the presence of ITu+EHNA as compared to EHNA alone (2.8+/-0.2 v 0.9+/-0.2 nmol/mg protein, respectively). ATP decreased from an initial value of 22.7+/-0.7 nmol/mg protein to 18.9+/-0.7 in the presence of ITu+EHNA, while ATP was maintained at 21.8+/-0.7 nmol/mg protein with EHNA. With adenine+ITu+EHNA, the changes were similar to those observed with ITu+EHNA. However, with ribose+adenine+ITu+EHNA, ATP increased to 25. 8+/-1.2 nmol/mg protein and adenosine concentration was elevated to 3.9+/-0.3 nmol/mg protein. Similar results were observed if AA was used instead of ITu to inhibit adenosine kinase. All the changes were maintained after 8 h of incubation. Adenosine content was increased in endothelial cells incubated with ITu+EHNA to 3.1+/-0.4 nmol/mg protein as compared to 1.1+/-0.2 nmol/mg protein with EHNA alone after 3 h, while ATP decreased (18.1+/-1.1 v 22.0+/-1.4 nmol/mg protein with EHNA+ITu or EHNA, respectively). In the presence of adenine+ITu+EHNA, adenosine content increased after 3 h to 6.5+/-0.9 nmol/mg protein while ATP was elevated to 26.1+/-0.8 nmol/mg protein. Additional presence of ribose was without effect. No changes in adenylate energy charge were observed in cardiomyocytes or endothelium under any conditions studied. Inhibition of adenosine kinase and adenosine deaminase caused a decrease in ATP together with increased adenosine content both in endothelial cells and cardiomyocytes. However, the addition of adenine (endothelial cells) or adenine with ribose (cardiomyocytes) together with inhibitors of adenosine metabolism protected cells from ATP depletion and further increased adenosine concentration.

摘要

本研究的目的是确定腺苷代谢抑制剂和核苷酸前体的最佳组合,以在非缺血性心肌细胞和内皮细胞中实现内源性腺苷浓度的长期升高,且无不良代谢后果。大鼠心脏经胶原酶消化后分离出心肌细胞和内皮细胞。将新鲜分离的心肌细胞或培养的内皮细胞在无抑制剂或底物的情况下,或与腺苷脱氨酶抑制剂:5 μM 赤藓红 -9(2 - 羟基 -3 - 壬基)腺嘌呤(EHNA)、腺苷激酶抑制剂:10 μM 5'-碘结核菌素(ITu)或 10 μM 5'-氨基腺苷(AA)以及核苷酸前体:100 μM 腺嘌呤、2.5 mM 核糖和 5 mM 无机磷酸盐的各种组合一起孵育长达 8 小时。孵育结束时,通过高效液相色谱法评估心肌细胞或内皮细胞提取物及孵育培养基中的核苷酸、核苷和碱基浓度。与单独使用 EHNA 相比,在 ITu + EHNA 存在下孵育 3 小时后,心肌细胞悬液中的腺苷含量增加(分别为 2.8±0.2 对 0.9±0.2 nmol/mg 蛋白质)。在 ITu + EHNA 存在下,ATP 从初始值 22.7±0.7 nmol/mg 蛋白质降至 18.9±0.7,而单独使用 EHNA 时 ATP 维持在 21.8±0.7 nmol/mg 蛋白质。使用腺嘌呤 + ITu + EHNA 时,变化与 ITu + EHNA 观察到的相似。然而,使用核糖 + 腺嘌呤 + ITu + EHNA 时,ATP 增加到 25.8±1.2 nmol/mg 蛋白质,腺苷浓度升高到 3.9±0.3 nmol/mg 蛋白质。如果使用 AA 代替 ITu 抑制腺苷激酶,观察到类似结果。孵育 8 小时后所有变化均保持。与单独使用 EHNA 时 1.1±0.2 nmol/mg 蛋白质相比,在 ITu + EHNA 孵育 3 小时后,内皮细胞中的腺苷含量增加到 3.1±0.4 nmol/mg 蛋白质,而 ATP 降低(分别为 18.1±1.1 对 22.0±1.4 nmol/mg 蛋白质,使用 EHNA + ITu 或 EHNA)。在腺嘌呤 + ITu + EHNA 存在下,3 小时后腺苷含量增加到 6.5±0.9 nmol/mg 蛋白质,而 ATP 升高到 26.1±0.8 nmol/mg 蛋白质。额外添加核糖无影响。在所研究的任何条件下,心肌细胞或内皮细胞中的腺苷酸能量电荷均未观察到变化。抑制腺苷激酶和腺苷脱氨酶导致内皮细胞和心肌细胞中的 ATP 减少,同时腺苷含量增加。然而,添加腺嘌呤(内皮细胞)或腺嘌呤与核糖(心肌细胞)以及腺苷代谢抑制剂可保护细胞免受 ATP 耗竭,并进一步增加腺苷浓度。

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