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Modulation of the Ca(2+) release channel of sarcoplasmic reticulum by amiloride analogs.

机译:阿米洛利类似物对肌质网Ca(2+)释放通道的调节。

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摘要

Dichlorobenzamil, phenamil and other amiloride analogs (1-100 microM) elicit transient tension in rabbit skinned muscle fibers. Tension requires preloading of Ca(2+) into the sarcoplasmic reticulum, is facilitated by low-[Mg(2+)] solutions, abolished by ruthenium red or by functional disruption of the sarcoplasmic reticulum, and is followed by inhibition of the caffeine-evoked tension. Bilayer recording of Cs(+) currents through the sarcoplasmic reticulum Ca(2+) release channel reveals that phenamil (10-100 microM) increases the open channel probability, whereas dichlorobenzamil affects the channel activity in a complex concentration- and time-dependent manner: stimulation occurs throughout exposure to 10 microM, but is followed by channel blockade when 100 microM dichlorobenzamil is used. It is concluded that stimulation of the sarcoplasmic reticulum Ca(2+) release channel accounts for the dichlorobenzamil- or phenamil-induced tension in skinned fibers, whereas depletion of sarcoplasmic reticulum Ca(2+) stores and channel block (with dichlorobenzamil) explains the inhibition of the caffeine-evoked tension by amiloride analogs.
机译:敌敌畏苄米,苯那米尔和其他阿米洛利类似物(1-100 microM)在兔皮肤肌肉纤维中引起短暂的张力。张力要求将Ca(2+)预装到肌浆网中,并通过低[Mg(2+)]溶液,钌红或肌浆网的功能破坏消除,并随后抑制咖啡因-引起紧张。通过肌浆网Ca(2+)释放通道的Cs(+)电流的双层记录揭示苯那米尔(10-100 microM)增加了开放通道的可能性,而敌百虫则以复杂的浓度和时间依赖性方式影响通道的活性:在暴露于10 microM时会发生刺激,但是当使用100 microM dichlorobenzamil时会发生通道阻断。结论是肌浆网Ca(2+)释放通道的刺激解释了皮肤纤维中dichlorobenzamil-或phenamil诱导的张力,而肌浆网Ca(2+)的存储和通道阻塞(与dichlorobenzamil)解释了阿米洛利类似物抑制咖啡因引起的紧张。

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