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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Calcineurin as a potential contributor in estradiol regulation of hippocampal synaptic function.
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Calcineurin as a potential contributor in estradiol regulation of hippocampal synaptic function.

机译:钙调磷酸酶是雌二醇调节海马突触功能的潜在贡献者。

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Estradiol influences Ca(2+) regulation and Ca(2+)-dependent synaptic plasticity, suggesting estrogenic effects on Ca(2+)-dependent enzymes that regulate synaptic plasticity may mediate hormonal influences on cognition. In ovariectomized female rats, injections of estradiol benzoate (EB, 10 microg) reduced hippocampal cytosolic activity of serine/threonine protein phosphatases, calcineurin and protein phosphatase 1 (PP1). The decreased activity was rapid and recovered substantially over a 24-h period. Decreased calcineurin activity was associated with a decreased level of calcineurin in the cytosol. In contrast, expression of PP1 was not altered suggesting that the level of calcineurin activity regulated PP1 activity. EB application to hippocampal slices rapidly decreased cytosolic phosphatase activity, which was not blocked by the estrogen receptor antagonist, ICI 182780. Decreased phosphatase activity was associated with an increase in CA3-CA1 synaptic transmission. In addition, EB application shifted synaptic plasticity, blocking the induction of long-term depression and facilitating the establishment of long-term potentiation. The reduction in calcineurin activity and shift in synaptic plasticity were mimicked to a lesser extent by 17-alpha-estradiol. From these results we suggest that EB can act to rapidly influence Ca(2+) signaling pathways including the activity of Ca(2+)-regulated phosphatases involved in synaptic plasticity.
机译:雌二醇影响Ca(2+)调节和Ca(2+)依赖的突触可塑性,表明雌激素对调节突触可塑性的Ca(2+)依赖的酶可能介导激素对认知的影响。在卵巢切除的雌性大鼠中,注射雌二醇苯甲酸酯(EB,10微克)会降低丝氨酸/苏氨酸蛋白磷酸酶,钙调磷酸酶和蛋白磷酸酶1(PP1)的海马胞质活性。活性下降迅速并且在24小时内基本恢复。钙调神经磷酸酶活性降低与细胞溶胶中钙调神经磷酸酶水平降低有关。相反,PP1的表达未改变,提示钙调神经磷酸酶活性水平调节PP1活性。 EB应用于海马切片会迅速降低胞质磷酸酶活性,这并未被雌激素受体拮抗剂ICI 182780阻断。磷酸酶活性降低与CA3-CA1突触传递增加有关。此外,EB的应用改变了突触可塑性,阻止了长期抑郁的诱发,并促进了长期增强的建立。钙调神经磷酸酶活性的降低和突触可塑性的变化在较小程度上被17-α-雌二醇模拟。从这些结果我们建议,EB可以迅速影响Ca(2+)信号通路,包括参与突触可塑性的Ca(2+)调节磷酸酶的活性。

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