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Regulation of spontaneous opening of muscarinic K+ channels in rabbit atrium.

机译:兔心房中毒蕈碱钾通道自发开放的调节。

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摘要

1. Intracellular mechanism(s) for controlling the opening of muscarinic K+ channels in the absence of an applied muscarinic agonist were studied in rabbit atrium by applying the patch clamp technique to isolated single myocytes. 2. In the cell-attached patch configuration, currents due to the activity of both the muscarinic K+ channel and the inward rectifying K+ channel were recorded. However, while the inward rectifying K+ channel currents were observed in only ten patches of 211 examined, spontaneous opening (i.e. in the absence of a muscarinic agonist) of the muscarinic K+ channel currents was observed in all patches examined in these atrial cells. 3. The single-channel currents due to spontaneous opening of muscarinic K+ channels were identified on the basis of their very similar conductance and gating properties to the unitary events which have been recorded when 0.5 microM-acetylcholine is included in the pipette and 10 microM-GTP is present in the internal side of the patch membrane. 4. Although the spontaneous opening of the muscarinic K+ channels disappeared soon after excision of the patch membrane, this type of channel activity reappeared following application of ATP and MgCl2 to the internal side of the torn-off patch, as expected from previous publications. 5. The K+ channel activity induced by the ATP and Mg2+ (measured as the product of the number of channels, N, times the probability of opening, Po) was strongly dependent upon concentration of free Mg2+; it was half-maximal at 2.2 x 10(-4) M [Mg2+]i. However, after the muscarinic K+ channels had been activated by 100 microM-guanosine 5'-O-3-thiotriphosphate (GTP gamma S) together with ATP and Mg2+, an increase in the Mg2+ concentration from 5.5 x 10(-5) to 2 x 10(-3) M failed to enhance this channel activity. 6. Pertussis toxin, which is known to uncouple muscarinic receptors from associated G-proteins (G(i) or G(o)), failed to inhibit the ATP- and Mg(2+)-induced activation of this K+ channel in the absence agonists. 7. In experiments made to test whether the Mg(2+)-ATP requirement results from an obligatory phosphorylation reaction, ATP was replaced with adenylyl-imidodiphosphate (AMP-PNP), an analogue of ATP which is resistant to hydrolysis. This K+ channel activity was not present when ATP was replaced with AMP-PNP.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.通过应用膜片钳技术对分离的单个肌细胞进行研究,在家兔心房中研究了在不施加毒蕈碱激动剂的情况下控制毒蕈碱K +通道开放的细胞内机制。 2.在贴有细胞的贴剂配置中,记录了由于毒蕈碱K +通道和向内整流K +通道的活性所引起的电流。然而,尽管仅在十一个检查的211片中观察到向内整流的K +通道电流,但是在这些心房细胞中检查的所有片中都观察到了毒蕈碱K +通道电流的自发打开(即,在没有毒蕈碱激动剂的情况下)。 3.根据毒蕈碱钾离子通道自发打开引起的单通道电流,是根据其电导率和门控特性与移液管中包含0.5 microM-乙酰胆碱和10 microM- GTP存在于贴膜的内侧。 4.尽管在切除膜片后不久,毒蕈碱K +通道的自发消失就消失了,但是如先前出版物所预期的那样,在将ATP和MgCl2应用于撕下的膜片的内侧后,这种类型的通道活性再次出现。 5. ATP和Mg2 +诱导的K +通道活性(以通道数N乘以打开概率Po的乘积来衡量)在很大程度上取决于游离Mg2 +的浓度。在2.2 x 10(-4)M [Mg2 +] i时为最大值的一半。但是,在毒蕈碱K +通道被100 microM-鸟苷5'-O-3-硫代三磷酸(GTPγS)连同ATP和Mg2 +激活后,Mg2 +浓度从5.5 x 10(-5)增加到2 x 10(-3)M无法增强此通道活动。 6.百日咳毒素已知能使毒蕈碱受体与相关的G蛋白(G(i)或G(o))解偶联,但不能抑制ATP-和Mg(2+)诱导的K +通道激活。缺乏激动剂。 7.在测试Mg(2 +)-ATP需求是否来自强制性磷酸化反应的实验中,ATP被腺苷-亚氨基二磷酸(AMP-PNP)取代,后者是ATP的一种类似物,具有抗水解性。当ATP替换为AMP-PNP时,该K +通道活性不存在。(摘要截短为400字)

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