Thompson Kimberly R, Otis Klara Olofsdotter, Chen Dillon Y, Zhao Yali, O'Dell Thomas J, Martin Kelsey C
Interdepartmental Program in Neuroscience, University of California, Los Angeles, Los Angeles, California 90095, USA.
Neuron. 2004 Dec 16;44(6):997-1009. doi: 10.1016/j.neuron.2004.11.025.
The requirement for transcription during long-lasting plasticity indicates that signals generated at the synapse must be transported to the nucleus. We have investigated whether the classical active nuclear import pathway mediates intracellular retrograde signal transport in Aplysia sensory neurons and rodent hippocampal neurons. We found that importins localize to distal neuronal processes, including synaptic compartments, where they are well positioned to mediate synapse to nucleus signaling. In Aplysia, stimuli known to produce long-lasting but not short-lasting facilitation triggered importin nuclear translocation. In hippocampal neurons, NMDA receptor activation but not depolarization induced importin nuclear translocation. We further showed that LTP-inducing stimuli recruited active nuclear import in hippocampal slices. Together with our finding that long-term facilitation of Aplysia sensory-motor synapses required active nuclear import, our results indicate that regulation of the active nuclear import pathway plays a critical role in transporting synaptically generated signals into the nucleus during learning-related forms of plasticity.
长时程可塑性过程中对转录的需求表明,在突触处产生的信号必须被转运到细胞核。我们研究了经典的主动核输入途径是否介导海兔感觉神经元和啮齿动物海马神经元中的细胞内逆行信号转运。我们发现输入蛋白定位于神经元远端突起,包括突触区室,在那里它们处于介导从突触到细胞核信号传递的有利位置。在海兔中,已知能产生长时程而非短时程易化的刺激会触发输入蛋白的核转位。在海马神经元中,NMDA受体激活而非去极化诱导输入蛋白的核转位。我们进一步表明,诱导长时程增强的刺激在海马切片中募集了主动核输入。连同我们发现海兔感觉运动突触的长期易化需要主动核输入,我们的结果表明,在与学习相关的可塑性形式中,主动核输入途径的调节在将突触产生的信号转运到细胞核中起着关键作用。