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培养的鸡胚心脏细胞内腺苷的形成及其载体介导的释放

Intracellular adenosine formation and its carrier-mediated release in cultured embryonic chick heart cells.

作者信息

Meghji P, Rubio R, Berne R M

机构信息

Department of Physiology, University of Virginia School of Medicine, Charlottesville 22908.

出版信息

Life Sci. 1988;43(23):1851-9. doi: 10.1016/s0024-3205(88)80002-x.

Abstract

Adenosine formation and release was examined in 48 hr old primary cultures of chick ventricular myocytes. Dilazep greater than hexobendine greater than dipyridamole inhibit incorporation of adenosine into chick embryonic heart cellular nucleotides in a concentration dependent manner. A combination of 30 mM 2-deoxyglucose and 2 micrograms of oligomycin/ml reduces the ATP content of the cells by 71% in 10 min. This change is accompanied by an increase in total adenosine concentration of 3.4 nmoles/10(7) cells in 10 min. Although the ATP concentration is not altered during hypoxia (95%N2/5%CO2), adenosine concentration increases by 0.52 nmoles/10(7) cells in 30 min. When nucleoside incorporation is inhibited by 85-90% by dipyridamole, dilazep or hexobendine, efflux of adenosine decreases by 70-90%, and 60-90% of the newly formed adenosine is trapped inside the cells compared to 10% in the absence of the transport inhibitors. alpha, beta -Methylene ADP inhibits the ecto 5'-nucleotidase activity by 91 +/- 6% but does not inhibit adenosine formation or alter its distribution between cells and medium, thus ruling out the involvement of this enzyme in adenosine formation. We conclude that adenosine is formed intracellularly during 2-deoxyglucose and oligomycin-induced ATP degradation and during hypoxia and that the nucleoside is released via the symmetric nucleoside transporter.

摘要

在48小时龄的鸡心室肌细胞原代培养物中检测了腺苷的生成和释放。双嘧达莫>己酮可可碱>潘生丁以浓度依赖性方式抑制腺苷掺入鸡胚心脏细胞核苷酸中。30 mM 2-脱氧葡萄糖和2微克/毫升寡霉素的组合在10分钟内使细胞的ATP含量降低71%。这种变化伴随着10分钟内每10⁷个细胞的总腺苷浓度增加3.4纳摩尔。尽管在缺氧(95%N₂/5%CO₂)期间ATP浓度没有改变,但腺苷浓度在30分钟内每10⁷个细胞增加0.52纳摩尔。当双嘧达莫、地拉齐普或己酮可可碱将核苷掺入抑制85-90%时,腺苷外流减少70-90%,与无转运抑制剂时的10%相比,新形成的腺苷有60-90%被困在细胞内。α,β-亚甲基ADP抑制胞外5'-核苷酸酶活性91±6%,但不抑制腺苷生成或改变其在细胞和培养基之间的分布,因此排除了该酶参与腺苷生成的可能性。我们得出结论,腺苷在2-脱氧葡萄糖和寡霉素诱导的ATP降解过程中以及缺氧期间在细胞内形成,并且核苷通过对称核苷转运体释放。

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