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ATPγS对心房细胞毒蕈碱型钾电流的激活作用。

Activation of muscarinic potassium currents by ATP gamma S in atrial cells.

作者信息

Otero A S, Breitwieser G E, Szabo G

机构信息

Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston 77550.

出版信息

Science. 1988 Oct 21;242(4877):443-5. doi: 10.1126/science.3051383.

Abstract

Intracellular perfusion of atrial myocytes with adenosine 5'-(gamma-thio) triphosphate (ATP gamma S), an ATP analog, elicits a progressive increase of the muscarinic potassium channel current, IK(M), in the absence of agonists. In this respect, ATP gamma S mimics the actions of guanosine triphosphate (GTP) analogs, which produce direct, persistent activation of the guanyl nucleotide-binding (G) protein controlling the K+(M) channel. The effect of ATP gamma S on IK(M), however, differs from that produced by GTP analogs in two aspects: it requires relatively large ATP gamma S concentrations, and it appears after a considerable delay, suggesting a rate-limiting step not present in similar experiments performed with guanosine 5'-(gamma-thio) triphosphate (GTP gamma S). Incubation of atrial homogenates with [35S]ATP gamma S leads to formation of significant amounts of [35S]GTP gamma S, suggesting that activation of IK(M) by ATP gamma S arises indirectly through its conversion into GTP gamma S by cellular enzymes. ATP gamma S is often used to demonstrate the involvement of protein phosphorylation in the control of various cellular processes. The finding that cytosolic application of ATP gamma S can also lead to G-protein activation implies that experiments with ATP gamma S must be interpreted with caution.

摘要

用腺苷 5'-(γ-硫代)三磷酸(ATPγS),一种 ATP 类似物,对心房肌细胞进行细胞内灌注,在没有激动剂的情况下会引起毒蕈碱钾通道电流 IK(M)的逐渐增加。在这方面,ATPγS 模拟了鸟苷三磷酸(GTP)类似物的作用,后者可直接、持续地激活控制 K+(M)通道的鸟苷酸结合(G)蛋白。然而,ATPγS 对 IK(M)的作用在两个方面不同于 GTP 类似物产生的作用:它需要相对较高的 ATPγS 浓度,并且在相当长的延迟后才出现,这表明在使用鸟苷 5'-(γ-硫代)三磷酸(GTPγS)进行的类似实验中不存在限速步骤。将心房匀浆与[35S]ATPγS 一起孵育会导致大量[35S]GTPγS 的形成,这表明 ATPγS 对 IK(M)的激活是通过细胞内酶将其转化为 GTPγS 间接产生的。ATPγS 常用于证明蛋白质磷酸化在各种细胞过程控制中的参与。胞质应用 ATPγS 也可导致 G 蛋白激活这一发现意味着对 ATPγS 实验的解释必须谨慎。

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