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首页> 外文期刊>Biochemical and Biophysical Research Communications >Neurosteroids allosterically modulate the ion pore of the NMDA receptor consisting of NR1/NR2B but not NR1/NR2A.
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Neurosteroids allosterically modulate the ion pore of the NMDA receptor consisting of NR1/NR2B but not NR1/NR2A.

机译:神经甾体会变构调节由NR1 / NR2B而非NR1 / NR2A组成的NMDA受体的离子孔。

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Neurosteroids are endogenously derived compounds, mediating rapid effects in the central nervous system. They participate in vital processes, including memory and learning, neuroplasticity, and neuroprotection in Alzheimer's disease. However, the mechanisms behind those effects remain to be elucidated. The neurosteroids pregnenolone sulphate (PS) and pregnanolone sulphate (3alpha5betaS) have recently been shown to allosterically alter the NMDA receptor in nanomolar concentrations. Those studies featured ifenprodil, which is a dirty drug, with affinity to many targets. In this study we compare the NMDA receptors in the hippocampus to recombinant NMDA receptors, using [3H]-MK-801 as radioligand. The results show that neurosteroids modulate the ifenprodil binding kinetics in a narrow concentration interval, addressing it to the NR2B subunit, since no effects were recorded at recombinant NR1/NR2A receptors. The effects were also seen as changes in the manner ifenprodil displaced or induced the dissociationof [3H]-MK-801. It indicates that the neurosteroidal effects indeed alter the ion pore of the NMDA receptor, why it is reasonable to believe that these findings have physiological relevance.
机译:神经类固醇是内源性衍生的化合物,在中枢神经系统中介导快速作用。他们参与重要的过程,包括阿尔茨海默氏病的记忆和学习,神经可塑性和神经保护作用。但是,这些作用背后的机制仍有待阐明。最近显示,神经甾体硫酸孕烯醇酮硫酸盐(PS)和硫酸孕烷醇酮(3alpha5betaS)会以纳摩尔浓度变构改变NMDA受体。这些研究的特色是艾芬洛地尔,一种肮脏的药物,对许多靶标具有亲和力。在这项研究中,我们使用[3H] -MK-801作为放射性配体将海马中的NMDA受体与重组NMDA受体进行了比较。结果表明,由于未在重组NR1 / NR2A受体上记录到任何作用,神经类固醇可在狭窄的浓度间隔内调节艾芬地尔的结合动力学,从而将其与NR2B亚基结合。该作用还被认为是前驱腈取代或诱导[3H] -MK-801解离的方式的变化。这表明神经甾体作用确实改变了NMDA受体的离子孔,为什么有理由相信这些发现与生理相关。

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