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首页> 外文期刊>Nature neuroscience >Synapse-specific plasticity and compartmentalized signaling in cerebellar stellate cells.
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Synapse-specific plasticity and compartmentalized signaling in cerebellar stellate cells.

机译:小脑星状细胞中突触特异的可塑性和分隔的信号传导。

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Here we demonstrate that cerebellar stellate cells diffusionally isolate synaptically evoked signals in dendrites and are capable of input-specific synaptic plasticity. Sustained activity of parallel fibers induces a form of long-term depression that requires opening of calcium (Ca(2+))-permeable AMPA-type glutamate receptors (CP-AMPARs) and signaling through class 1 metabotropic glutamate receptors (mGluR1) and CB1 receptors. This depression is induced by postsynaptic increases in Ca(2+) concentration ([Ca(2+)]) and is limited to activated synapses. To understand how synapse-specific plasticity is induced by diffusible second messengers in aspiny dendrites, we examined diffusion of Ca(2+) and small molecules within stellate cell dendrites. Activation of a single parallel fiber opened CP-AMPARs, generating long-lived Ca(2+) transients that were confined to submicron dendritic stretches. The diffusion of Ca(2+) was severely retarded due to interactions with parvalbumin and a general restriction of smallmolecule mobility. Thus stellate cell dendrites spatially restrict signaling cascades that lead from CP-AMPAR activation to endocannabinoid production and trigger the selective regulation of active synapses.
机译:在这里,我们证明小脑星状细胞扩散分离突触诱发树突状细胞的信号,并能够输入特定的突触可塑性。平行纤维的持续活动会诱发一种长期压抑,需要打开钙(Ca(2+))渗透性AMPA型谷氨酸受体(CP-AMPARs)并通过1类代谢型谷氨酸受体(mGluR1)和CB1发出信号受体。这种抑郁症是由Ca(2+)浓度([Ca(2+)])的突触后增加诱导的,并且仅限于激活的突触。为了了解突触树突状细胞中可扩散的第二信使如何诱导突触特异性可塑性,我们检查了Ca(2+)和小分子在星状细胞树突状细胞中的扩散。单个平行纤维的激活打开了CP-AMPAR,生成了长寿命的Ca(2+)瞬态,该瞬态被限制在亚微米的树枝状拉伸中。由于与小白蛋白的相互作用和小分子迁移的一般限制,Ca(2+)的扩散受到严重阻碍。因此,星状细胞树突在空间上限制了从CP-AMPAR激活导致内源性大麻素生成并触发活性突触的选择性调节的信号级联。

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