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儿茶酚胺对大鼠心肌代谢的影响。II. 儿茶酚胺对32P掺入大鼠心肌腺苷酸及其周转的影响。

Effects of catecholamines on rat myocardial metabolism. II. Influence of catecholamines on 32p-incorporation into rat myocardial adenylic nucleotides and their turn-over.

作者信息

Merouze P, Gaudemer Y, Gautheron D

出版信息

Biochimie. 1975;57(6-7):803-10. doi: 10.1016/s0300-9084(75)80055-1.

Abstract
  1. The influence of catecholamines (adrenaline and noradrenaline) on 32Pi incorporation into intracellular phosphate and adenylic nucleotides has been studied on rat myocardium slices; consequently, the turn-over of nucleotides could be determined and compared under the influence of these two hormones. 2. In order to specify the site of action of these catecholamines, several inhibitors and activators of energetic metabolism were included in the incubation medium: 3'5'-AMP, caffein, ouabain, oligomycin, rotenone + antimycin. 3. Both catecholamines favour Pi exchanges between intra and extracellular spaces; ATP turn-over is greatly increased, while ADP turn-over is slightly decreased, and 32P-incorporation into ADP is increased. 4. 3'5'-AMP and caffein are without effect on Pi penetration; however, caffein increases catecholamine effects on this penetration. ATP turn-over is slightly increased by 3'5'-AMP or caffein. 5. Ouabain decreases ATP turn-over but does not prevent the adrenaline induced acceleration. Inhibitors of oxidative phosphorylation and electron transport decrease ATP-turn-over severely; this inhibition is not released by catecholamines. 6. It is concluded that the catecholamine effects observed are dependent on the oxidative phosphorylations process. The increase of Pi exchange by catecholamines may be related to the increase of extracellular space and cation translocations we observed with the hormones.
摘要
  1. 已在大鼠心肌切片上研究了儿茶酚胺(肾上腺素和去甲肾上腺素)对32Pi掺入细胞内磷酸盐和腺苷酸核苷酸的影响;因此,可以确定并比较这两种激素作用下核苷酸的周转情况。2. 为了明确这些儿茶酚胺的作用位点,孵育培养基中加入了几种能量代谢抑制剂和激活剂:3',5'-AMP、咖啡因、哇巴因、寡霉素、鱼藤酮+抗霉素。3. 两种儿茶酚胺均有利于细胞内外空间之间的Pi交换;ATP周转大幅增加,而ADP周转略有下降,且32P掺入ADP增加。4. 3',5'-AMP和咖啡因对Pi渗透无影响;然而,咖啡因会增强儿茶酚胺对这种渗透的作用。3',5'-AMP或咖啡因会使ATP周转略有增加。5. 哇巴因会降低ATP周转,但不能阻止肾上腺素诱导的加速作用。氧化磷酸化和电子传递抑制剂会严重降低ATP周转;儿茶酚胺不会解除这种抑制。6. 得出的结论是,观察到的儿茶酚胺作用取决于氧化磷酸化过程。儿茶酚胺导致的Pi交换增加可能与我们观察到的这些激素引起的细胞外空间增加和阳离子转运有关。

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