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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Acute cell volume regulation by Janus kinase 2-mediated sodium/hydrogen exchange activation develops at the late one-cell stage in mouse preimplantation embryos
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Acute cell volume regulation by Janus kinase 2-mediated sodium/hydrogen exchange activation develops at the late one-cell stage in mouse preimplantation embryos

机译:Janus激酶2介导的急性细胞体积调节2介导的钠/氢气交换激活在小鼠预致剂胚胎中的后细胞阶段发生

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摘要

Early preimplantation embryos are extremely sensitive to dysregulation of cell volume, which can lead to developmental arrest. It was previously shown that mouse embryos at the two-cell stage respond to a cell volume decrease by quickly activating Na+/H+ exchange via a signaling mechanism that involves the tyrosine kinase Janus kinase 2 (JAK2). However, it was not known whether this mechanism is active at the one-cell stage, when embryos are most sensitive to perturbed cell volume. Na+/H+ exchanger activity elicited by an induced cell volume decrease was significantly lower at the mid one-cell stage than at the late one-cell stage or during the two-cell stage. This activity could be completely blocked by the broad specificity tyrosine kinase inhibitor genistein at either stage, but only at the two-cell stage was there a substantial component of activity that was sensitive to low concentrations of the JAK2-selective inhibitors TG101348 or ruxolitinib. Western blots to detect active JAK2 phosphorylated on tyrosine Y1007/8 revealed that JAK2 became substantially phosphorylated in response to a cell volume decrease at the mid two-cell, but not mid one-cell stage. Such cell volume decrease-induced JAK2 phosphorylation appeared by the late one-cell stage. At least in part this appears to be due to an increase in total JAK2 protein at the late one-cell stage. Furthermore, TG101348 impaired maintenance of cell volume at the two-cell, but not mid one-cell, stages. Thus, cell volume homeostasis requiring Na+/H+ exchange signaled by JAK2 first becomes prominent during mouse embryonic development at the late one-cell stage.
机译:早期的预溶解胚胎对细胞体积的失调非常敏感,这可能导致发育逮捕。前面表明,通过通过涉及酪氨酸激酶Janus激酶2(JAK2)的信号传导机构快速激活Na + / H +交换,双细胞阶段的小鼠胚胎响应细胞体积而降低。然而,当胚胎对扰动细胞体积最敏感时,尚不知道该机制是否在单细胞阶段是活性的。在中间细胞阶段的诱导细胞体积减少引发的Na + / H +交换器活性显着低于晚细胞阶段或在双细胞阶段期间的阶段显着降低。该活性可以通过宽特异性酪氨酸激酶抑制剂Genistein在任一阶段完全阻断,但在双细胞阶段仅有大量的活性组分,对jak2选择性抑制剂Tg101348或ruxolitinib的低浓度敏感。 Western印迹以检测酪氨酸Y1007 / 8上磷酸化的活性JAK2显示,据响应于中间两个细胞的细胞体积降低,而不是中间细胞阶段,JAK2变得基本上磷酸化。这种细胞体积降低诱导的jak2磷酸化出现了晚细胞阶段。至少部分地似乎是由于晚细胞阶段的总jak2蛋白质增加。此外,TG101348 TG101348在双细胞中的细胞体积的维持受损,但不是中间细胞阶段的维持。因此,在晚期单细胞阶段,在小鼠胚胎发育期间,jak2要求jak2的细胞体积稳态首先变得突出。

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