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内源性 GluN2B 对 CaMKIIα 的突触募集依赖于差异刺激。

Differential stimulus-dependent synaptic recruitment of CaMKIIα by intracellular determinants of GluN2B.

机构信息

Brain Research Centre and Department of Psychiatry, University of British Columbia, Vancouver, BC, Canada, V6T 2B5.

出版信息

Mol Cell Neurosci. 2012 Nov;51(3-4):68-78. doi: 10.1016/j.mcn.2012.08.001. Epub 2012 Aug 10.

Abstract

The calcium-calmodulin activated kinase CaMKII mediates many forms of learning and memory. Activity-regulated translocation of CaMKII to synapses is important for its functions in synaptic plasticity. Here, we tested the role of the NMDA receptor subunit GluN2B in recruiting CaMKIIα to synapses with different paradigms: global bath stimulation of NMDA receptors, a chemical long term potentiation (cLTP) protocol that selectively activates synaptic NMDA receptors, or local stimulation of NMDA receptors at a contiguous set of ~10-30 synapses that triggers a propagating synaptic accumulation of CaMKII. Global or cLTP-induced synaptic accumulation of CaMKIIα occurred in wild-type but not sister GluN2B -/- cultured mouse hippocampal neurons. Expression of YFP-GluN2B, but not a similar level of YFP-GluN2A, rescued global and cLTP-induced CaMKIIα translocation. Using chimeric constructs, the pore-forming extracellular and membrane domains of GluN2A combined with the cytoplasmic tail of GluN2B were sufficient to rescue CaMKIIα translocation, whereas the reverse chimera was ineffective. Furthermore, the dual point mutation R1300Q,S1303D in GluN2B that blocks interaction of this high affinity site with CaMKII abolished rescue. Thus, CaMKII binding to GluN2B is required for global and cLTP-induced synaptic accumulation of CaMKIIα. However, surprisingly, locally induced propagating synaptic accumulation of CaMKIIα occurred normally in GluN2B -/- neurons, indistinguishably from wild-type. Thus, synaptic trapping of CaMKII during locally induced propagating translocation occurs by different mechanisms and molecular partners compared with global stimulation and cLTP paradigms. These findings underscore the complex regulatory properties and molecular interactions of CaMKIIα, a key player in synaptic plasticity.

摘要

钙调蛋白激活的激酶 CaMKII 介导多种形式的学习和记忆。CaMKII 的活性调节易位到突触对于其在突触可塑性中的功能很重要。在这里,我们使用不同的范式测试了 NMDA 受体亚基 GluN2B 在将 CaMKIIα募集到突触中的作用:NMDA 受体的全局浴刺激、选择性激活突触 NMDA 受体的化学长时程增强 (cLTP) 方案,或在一组连续的~10-30 个突触上局部刺激 NMDA 受体,引发 CaMKII 的传播性突触积累。全局或 cLTP 诱导的 CaMKIIα突触积累发生在野生型但不是姐妹型 GluN2B -/- 培养的小鼠海马神经元中。YFP-GluN2B 的表达,但不是类似水平的 YFP-GluN2A,可挽救全局和 cLTP 诱导的 CaMKIIα易位。使用嵌合构建体,GluN2A 的孔形成细胞外和膜结构域与 GluN2B 的细胞质尾部相结合足以挽救 CaMKIIα易位,而反向嵌合体则无效。此外,GluN2B 中的双点突变 R1300Q,S1303D 阻止该高亲和力结合位点与 CaMKII 的相互作用,从而阻止了挽救。因此,CaMKII 与 GluN2B 的结合对于全局和 cLTP 诱导的 CaMKIIα突触积累是必需的。然而,令人惊讶的是,局部诱导的 CaMKIIα传播性突触积累在 GluN2B -/- 神经元中正常发生,与野生型无明显区别。因此,与全局刺激和 cLTP 范式相比,局部诱导的传播性易位过程中 CaMKII 的突触捕获通过不同的机制和分子伴侣发生。这些发现强调了 CaMKIIα作为突触可塑性关键参与者的复杂调节特性和分子相互作用。

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