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内源性神经营养因子-3调节外侧穿通通路-颗粒细胞突触处的短期可塑性。

Endogenous neurotrophin-3 regulates short-term plasticity at lateral perforant path-granule cell synapses.

作者信息

Kokaia M, Asztely F, Olofsdotter K, Sindreu C B, Kullmann D M, Lindvall O

机构信息

Section of Restorative Neurology, Wallenberg Neuroscience Center, University Hospital, S-221 85 Lund, Sweden.

出版信息

J Neurosci. 1998 Nov 1;18(21):8730-9. doi: 10.1523/JNEUROSCI.18-21-08730.1998.

Abstract

In the adult brain, neurotrophin-3 (NT-3) is mainly localized in dentate granule cells, and its expression is decreased by various stimuli, e.g., seizure activity. We have examined the role of endogenous NT-3 for excitatory synaptic transmission at lateral perforant path-dentate granule cell synapses using hippocampal slices from NT-3 knock-out (+/-) and wild-type (+/+) mice. Paired-pulse facilitation (PPF) and also short-term synaptic plasticity induced by a brief, high-frequency train of afferent stimulation were reduced, but the expression of long-term potentiation was not affected in the NT-3+/- mice. Incubation of the slices with recombinant NT-3 reversed the deficit in PPF through a mechanism requiring de novo protein synthesis, implying that the impaired short-term plasticity does not result from a developmental alteration. No changes of overall presynaptic release probability, measured by the progressive block of NMDA receptor-mediated synaptic currents by MK-801, or desensitization of AMPA receptors were detected. Because NT-3 expression is reduced after focal seizures, impaired short-term facilitation may represent a protective response that limits the propagation of epileptiform activity from the entorhinal cortex to the hippocampus.

摘要

在成人大脑中,神经营养因子-3(NT-3)主要定位于齿状颗粒细胞,其表达会因各种刺激(如癫痫活动)而降低。我们使用来自NT-3基因敲除(+/-)和野生型(+/+)小鼠的海马切片,研究了内源性NT-3在外侧穿通通路-齿状颗粒细胞突触兴奋性突触传递中的作用。在NT-3+/-小鼠中,双脉冲易化(PPF)以及由短暂高频传入刺激序列诱导的短期突触可塑性均降低,但长时程增强的表达未受影响。用重组NT-3孵育切片通过一种需要从头合成蛋白质的机制逆转了PPF的缺陷,这意味着短期可塑性受损并非由发育改变所致。未检测到由MK-801对NMDA受体介导的突触电流进行渐进性阻断所测量的总体突触前释放概率或AMPA受体脱敏的变化。由于局灶性癫痫发作后NT-3表达降低,短期易化受损可能代表一种保护反应,可限制癫痫样活动从内嗅皮质向海马的传播。

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