首页> 外文OA文献 >Kinetics of cytosolic Ca2+ concentration after photolytic release of 1-D-myo-inositol 1,4-bisphosphate 5-phosphorothioate from a caged derivative in guinea pig hepatocytes.
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Kinetics of cytosolic Ca2+ concentration after photolytic release of 1-D-myo-inositol 1,4-bisphosphate 5-phosphorothioate from a caged derivative in guinea pig hepatocytes.

机译:从豚鼠肝细胞中的笼状衍生物中光解释放1-D-肌醇1,4-双磷酸5-磷酸硫代磷酸酯后的胞质Ca2 +浓度动力学。

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摘要

The influence of 1-D-myo-inositol 1,4,5-trisphosphate (InsP3) breakdown by InsP3 5-phosphatase in determining the time course of Ca2+ release from intracellular stores was investigated with flash photolytic release of a stable InsP3 derivative, 5-thio-InsP3, from a photolabile caged precursor. The potency and Ca(2+)-releasing properties of the biologically active D isomers of 5-thio-InsP3 and InsP3 itself were compared by photolytic release in guinea pig hepatocytes. After a light flash, cytosolic free calcium concentration ([Ca2+]i) showed an initial delay before rising quickly to a peak and declining more slowly to resting levels, with time course and amplitude generally similar to those seen with photolytic release of InsP3. Differences were a three- to eightfold lower potency of 5-thio-InsP3 in producing Ca2+ release, much longer delays between photolytic release and Ca2+ efflux with low concentrations of 5-thio-InsP3 than with InsP3, and persistent reactivation of Ca2+ release, producing periodic fluctuations of cytosolic [Ca2+]i with high concentrations of 5-thio-InsP3 but not InsP3 itself. The lower potency of 5-thio-InsP3 may be a result of a lower affinity for closed receptor/channels or a lower open probability of liganded receptor/channels. The longer delays with 5-thio-InsP3 at low concentration suggest that metabolism of InsP3 by 5-phosphatase may reduce the concentration sufficiently to prevent receptor activation and may have a similar effect on InsP3 concentration during hormonal activation. The maximal rate of rise of [Ca2+]i, the duration of the period of high Ca2+ efflux, and the initial decline of [Ca2+]i are similar with5-thio-lnsP3 and lnsP3, indicating that lnsP3 breakdown is not important in terminating Ca2+ release. The second activation ofInsP3 receptors with 5-thio-lnsP3 and particularly the sustained periodic fluctuations of [Ca2+]i indicate persistence of 5-thio-lnsP3,suggesting that InsP3 breakdown prevents reactivation of InsP3 receptors. The photochemical properties of 1-(2-nitrophenyl)-ethyl caged 5-thio-lnsP3 are photolytic quantum yield = 0.57 (cf. 0.65 for caged InsP3) and rate of photolysis = 87 s-I (half-life approximately 8 ms; cf. 3 ms for caged lnsP3; pH7.1; ionic strength, 0.2 M; 21 OC). Caged 5-thio-lnsP3 at concentrations up to 360 pM did not activate lnsP3 receptors to produce Ca2+ release or block Ca2+ release by free 5-thio-lnsP3.
机译:通过快速光解释放稳定的InsP3衍生物,研究了InsP3 5-磷酸酶对1-D-肌醇1,4,5-三磷酸(InsP3)的分解在确定Ca2 +从细胞内存储释放的时间过程中的影响5 -硫-InsP3,来自对光不稳定的笼状前体。通过豚鼠肝细胞中的光解释放比较了5-thio-InsP3和InsP3本身的生物活性D异构体的效能和Ca(2+)释放特性。闪烁后,胞浆中的游离钙浓度([Ca2 +] i)出现了初始延迟,然后迅速上升至峰值,然后更缓慢地下降至静止水平,其时程和振幅通常与InsP3的光解释放相似。差异是:5-硫代-InsP3产生Ca2 +释放的效力降低三到八倍,低浓度的5-硫代-InsP3的光解释放和Ca2 +外排之间的延迟比InsP3长得多,并且Ca2 +释放的持续再活化产生高浓度5-硫基-InsP3而不是InsP3本身的胞质[Ca2 +] i的周期性波动。 5-thio-InsP3的效力较低可能是由于对封闭受体/通道的亲和力较低或配体受体/通道的开放概率较低的结果。在低浓度下使用5-thio-InsP3的延迟时间更长,这表明5-磷酸酶对InsP3的代谢可能会充分降低其浓度以防止受体激活,并且可能在激素激活过程中对InsP3浓度产生类似的影响。与5-硫代-lnsP3和lnsP3相似,[Ca2 +] i的最大上升速率,高Ca2 +外排的持续时间和[Ca2 +] i的初始下降相似,表明lnsP3的分解对于终止Ca2 +并不重要。释放。 5-硫代InsP3对InsP3受体的第二次激活,特别是[Ca2 +] i的持续周期性波动表明5-硫代InsP3的持续存在,这表明InsP3分解阻止了InsP3受体的再激活。 1-(2-硝基苯基)-乙基笼中的5-硫代-InsP3的光化学性质为光解量子产率= 0.57(笼中的InsP3参见0.65)和光解速率= 87 sI(半衰期约为8毫秒;参见图7)。笼状lnsP3为3 ms; pH7.1;离子强度为0.2 M; 21 OC)。笼中浓度高达360 pM的5-硫代lnsP3不会激活lnsP3受体以释放游离的5-硫代lnsP3来释放Ca2 +或阻断Ca2 +的释放。

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