首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Modulation of the calmodulin-induced inhibition of sarcoplasmic reticulum calcium release channel (ryanodine receptor) by sulfhydryl oxidation in single channel current recordings and ((3)H)ryanodine binding.
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Modulation of the calmodulin-induced inhibition of sarcoplasmic reticulum calcium release channel (ryanodine receptor) by sulfhydryl oxidation in single channel current recordings and ((3)H)ryanodine binding.

机译:钙调蛋白诱导的抑制肌质网钙释放通道(ryanodine受体)的巯基氧化在单通道电流记录和((3)H)ryanodine绑定。

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The modulation of the calmodulin-induced inhibition of the calcium release channel (ryanodine receptor) by two sulfhydryl oxidizing compounds, 4-(chloromercuri)phenyl-sulfonic acid (4-CMPS) and 4, 4'-dithiodipyridine (4,4'-DTDP) was determined by single channel current recordings with the purified and reconstituted calcium release channel from rabbit skeletal muscle sarcoplasmic reticulum (HSR) and [(3)H]ryanodine binding to HSR vesicles. 0.1 microm CaM reduced the open probability (P(o)) of the calcium release channel at maximally activating calcium concentrations (50-100 microm) from 0.502 +/- 0.02 to 0.137 +/- 0.022 (n = 28), with no effect on unitary conductance. 4-CMPS (10-40 microm) and 4,4'-DTDP (0.1-0.3 mm) induced a concentration dependent increase in P(o) (> 0.9) and caused the appearance of longer open states. CaM shifted the activation of the calcium release channel by 4-CMPS or 4,4'-DTDP to higher concentrations in single channel recordings and [(3)H]ryanodine binding. 40 microm 4-CMPS induced a near maximal (P(o) > 0.9) and 0.3 mm 4,4'-DTDP a submaximal (P(o) = 0.74) channel opening in the presence of CaM, which was reversed by the specific sulfhydryl reducing agent DTT. Neither 4-CMPS nor 4,4'-DTDP affected Ca-[(125)I]calmodulin binding to HSR. 1 mm MgCl(2) reduced P(o) from 0.53 to 0.075 and 20-40 microm 4-CMPS induced a near maximal channel activation (P(o) > 0.9). These results demonstrate that the inhibitory effect of CaM or magnesium in a physiological concentration is diminished or abolished at high concentrations of 4-CMPS or 4,4'-DTDP through oxidation of activating sulfhydryls on cysteine residues of the calcium release channel.
机译:钙硫蛋白诱导的钙释放通道(ryanodine受体)的抑制作用是由两种巯基氧化化合物,4-(氯汞基)苯基磺酸(4-CMPS)和4,4'-二硫代二吡啶(4,4'- DTDP)是通过单通道电流记录来确定的,该通道具有从兔骨骼肌肌浆网(HSR)和[(3)H] ryanodine与HSR囊泡结合的纯化和重构的钙释放通道。 0.1微米CaM将最大激活钙浓度(50-100微米)时钙释放通道的打开概率(P(o))从0.502 +/- 0.02降低到0.137 +/- 0.022(n = 28),没有任何影响关于统一电导。 4-CMPS(10-40微米)和4,4'-DTDP(0.1-0.3毫米)引起P(o)(> 0.9)的浓度依赖性增加,并导致出现更长的开放状态。 CaM通过4-CMPS或4,4'-DTDP将钙释放通道的激活转移到单通道记录和[(3)H] ryanodine结合中更高的浓度。在CaM存在的情况下,40微米4-CMPS诱导了近最大(P(o)> 0.9)和0.3 mm 4,4'-DTDP的亚最大(P(o)= 0.74)通道开放,这被特定巯基还原剂DTT。 4-CMPS和4,4'-DTDP均不影响Ca-[(125)I]钙调蛋白与HSR的结合。 1毫米MgCl(2)将P(o)从0.53降低到0.075,并且20-40微米4-CMPS诱导了接近最大的通道激活(P(o)> 0.9)。这些结果表明,在高浓度的4-CMPS或4,4'-DTDP下,通过氧化钙释放通道的半胱氨酸残基上的活化巯基,CaM或镁在生理浓度下的抑制作用减弱或消失。

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