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首页> 外文期刊>Archives of Insect Biochemistry and Physiology >Hormonal Activation of Phosphorylase in Cockroach Fat Body Trophocytes: A Correlation With Trans-Membrane Calcium Flux
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Hormonal Activation of Phosphorylase in Cockroach Fat Body Trophocytes: A Correlation With Trans-Membrane Calcium Flux

机译:蟑螂脂肪体滋养细胞中磷酸化酶的激素激活:与跨膜钙通量的相关性。

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This study is an investigation of the temporal relationship be- tween transmembrane Ca2+ fluxes, and glycogen phosphorylase activation in dispersed trophocytes from the fat body of the cockroach, Periplaneta americana. Phosphorylase is maximally activated within 5 min after treating the trophocytes with ei- ther of the hypertrehalosemic hormones, Pea-HTH-I and Pea- HTH-II. Activation caused by Pea-HTH-Il is sustained for a longer period than that produced by Pea.HTH-I. Chelation of extracellular Ca2+ with EGTA blocks the activation of phospho- rylase by HTH. Similarly, chelation of intracellular Ca2+ with Quin 2 greatly diminishes the phosphorylase activating effect of both HTHs. The data support the view that an increase in the intracellular Ca2+ concentration is required for the activa- tion of phosphorylase and that extracellular Ca2+ is an essen- tial, although not necessarily sole, source of Ca2+ for this purpose. Using 45Ca2+ to trace the movement of Ca2+ following a challenge with either Pea-HTH.I or -II, it was shown that 45Ca2+influx nearly doubled during the first 30 s. At this time, the trophocytes begin to expel Ca2+ at a rate higher than that of untreated cells and this state persists for approximately 4 min. The Ca2+ fluxes are consistent with its postulated role in the activation of phosphorylase. Arch. Insect Biochem. Physiol. 42~233-244. 1999.
机译:这项研究是对跨膜Ca2 +通量与蟑螂美洲大i脂肪体中分散滋养细胞糖原磷酸化酶活化之间时间关系的研究。在用高海藻糖激素Pea-HTH-I和Pea-HTH-II中的一种处理滋养细胞后5分钟内,磷酸化酶被最大程度地激活。与由豌豆HTH-1产生的活化相比,由豌豆HTH-11引起的活化持续了更长的时间。 EGTA与细胞外Ca2 +螯合可阻止HTH激活磷酸化酶。同样,细胞内Ca2 +与Quin 2的螯合大大降低了两种HTH的磷酸化酶激活作用。数据支持这样的观点,即激活磷酸化酶需要增加细胞内Ca2 +的浓度,并且为此目的,细胞外Ca2 +是必需的Ca2 +来源,尽管不一定是唯一的。在用Pea-HTH.I或-II攻击后,使用45Ca2 +追踪Ca2 +的运动,结果表明在最初30 s内45Ca2 +的流入几乎翻了一番。此时,营养细胞开始以比未处理细胞更高的速率排出Ca2 +,并且这种状态持续约4分钟。 Ca2 +通量与其在磷酸化酶激活中的假定作用一致。拱。昆虫生化。生理学。 42〜233-244。 1999年。

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