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首页> 外文期刊>The Journal of Physiology >Compartmentalized NMDA receptor signalling to survival and death
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Compartmentalized NMDA receptor signalling to survival and death

机译:隔室NMDA受体对生存和死亡的信号传递

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摘要

The ability of Ga~(2+) influx through the N-methyl D-aspartate subclass of glutamate receptor (NMDA receptor) to both kill neurons and to promote survival under different circumstances is well established. Here we discuss the signal pathways that mediate this dichotomous signalling, and the factors that influence whether an NMDA receptor-dependent Ca~(2+) signal results in a net pro-survival or pro-death effect. The magnitude of NMDA receptor activation, be it intensity or duration, is of course very important in determining the nature of the response to an episode of NMDA receptor activity, with excitotoxic death pathways requiring higher levels than survival pathways. However, the NMDA receptor is not merely a conduit for Ca~(2+) influx: the consequences of NMDA receptor activity can be influenced by signalling molecules that physically associate with the NMDA receptor or indeed the location (synaptic versus extrasynaptic) of the receptor. Furthermore, we discuss the possibility that the Ca~(2+) effectors of survival and death are in different subcellular locations, and thus depend on the spatial characteristics of the Ca~(2+) transient. A greater understanding of these issues may point to ways of selectively blocking pro-death signalling in neurological disorders such as stroke, where global NMDA receptor antagonists have proved ineffective.
机译:已经确定了Ga〜(2+)通过谷氨酸受体(NMDA受体)的N-甲基D-天冬氨酸亚类流入的杀伤神经元并促进在不同情况下存活的能力。在这里,我们讨论了介导这种二分信号的信号通路,以及影响NMDA受体依赖性Ca〜(2+)信号导致净生存或死亡效应的因素。 NMDA受体激活的强度,无论是强度还是持续时间,在确定对NMDA受体活性发作的反应的性质中当然是非常重要的,其中兴奋性毒性死亡途径需要比生存途径更高的水平。但是,NMDA受体不仅是Ca〜(2+)流入的通道:NMDA受体活性的后果可能会受到与NMDA受体物理结合的信号分子或受体的位置(突触与突触外)的影响。 。此外,我们讨论了生存和死亡的Ca〜(2+)效应子在不同的亚细胞位置,并因此取决于Ca〜(2+)瞬态的空间特征的可能性。对这些问题的更深入的了解可能指向选择性阻断神经系统疾病(如中风)中促死信号的方法,而全球NMDA受体拮抗剂已被证明是无效的。

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