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首页> 外文期刊>Brain research >5-Lipoxygenase inhibitor MK-886 increases GluR1 phosphorylation in neuronal cultures in vitro and in the mouse cortex in vivo.
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5-Lipoxygenase inhibitor MK-886 increases GluR1 phosphorylation in neuronal cultures in vitro and in the mouse cortex in vivo.

机译:5-脂氧合酶抑制剂MK-886在体外和体内小鼠皮层中增加神经元培养物中的GluR1磷酸化。

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摘要

Modifications of AMPA glutamate receptor GluR1 phosphorylation are critical for neuroplastic mechanisms. Previous in vitro studies in brain slices employed MK-886, a functional inhibitor of the enzyme 5-lipoxygenase (5-LOX), and found increased GluR1 phosphorylation. Since slice preparations have accompanying postmortem phosphorylation changes, e.g., decreased GluR1 phosphorylation, it remains to be clarified whether MK-886 can affect GluR1 phosphorylation in intact neurons and in the brain in vivo. We used primary neuronal cultures prepared from embryonic mouse brain and in vivo drug administration to investigate the effects of MK-886 on GluR1 phosphorylation using quantitative Western immunoblotting assays. In vitro, MK-886 increased GluR1 phosphorylation at both serine 831 and serine 845. In vivo, repeated but not a single MK-886 injection increased GluR1 phosphorylation in the prefrontal cortex. These findings indicate that MK-886 has an intrinsic effect on neuronal phosphorylation both in vitro and in vivo and support the use of MK-886 as a pharmacological tool in studies of not only the 5-LOX pathway but also neuronal GluR1 functioning.
机译:AMPA谷氨酸受体GluR1磷酸化的修饰对于神经增生机制至关重要。先前在脑切片中进行的体外研究使用了MK-886(一种5-脂氧合酶(5-LOX)的功能抑制剂),并发现GluR1磷酸化增加。由于切片制剂具有伴随的死后磷酸化变化,例如降低的GluR1磷酸化,因此尚需弄清楚MK-886是否可以影响完整神经元和体内脑中的GluR1磷酸化。我们使用从胚胎小鼠大脑制备的原代神经元培养物和体内药物给药,使用定量Western免疫印迹试验研究了MK-886对GluR1磷酸化的影响。在体外,MK-886增强丝氨酸831和845丝氨酸的GluR1磷酸化。在体内,重复但未单次注射MK-886增强前额叶皮层中GluR1的磷酸化。这些发现表明,MK-886在体外和体内均对神经元磷酸化具有内在作用,并支持将MK-886用作药理学工具,不仅用于研究5-LOX途径,而且还用于神经元GluR1的功能研究。

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