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首页> 外文期刊>Cell Reports >The Developmental Shift of NMDA Receptor Composition Proceeds Independently of GluN2 Subunit-Specific GluN2 C-Terminal Sequences
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The Developmental Shift of NMDA Receptor Composition Proceeds Independently of GluN2 Subunit-Specific GluN2 C-Terminal Sequences

机译:NMDA受体组成的发展转移独立于GluN2亚基特定的GluN2 C末端序列进行。

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Summary The GluN2 subtype (2A versus 2B) determines biophysical properties and signaling of forebrain NMDA receptors (NMDARs). During development, GluN2A becomes incorporated into previously GluN2B-dominated NMDARs. This “switch” is proposed to be driven by distinct features of GluN2 cytoplasmic C-terminal domains (CTDs), including a unique CaMKII interaction site in GluN2B that drives removal from the synapse. However, these models remain untested in the context of endogenous NMDARs. We show that, although mutating the endogenous GluN2B CaMKII site has secondary effects on GluN2B CTD phosphorylation, the developmental changes in NMDAR composition occur normally and measures of plasticity and synaptogenesis are unaffected. Moreover, the switch proceeds normally in mice that have the GluN2A CTD replaced by that of GluN2B and commences without an observable decline in GluN2B levels but is impaired by GluN2A haploinsufficiency. Thus, GluN2A expression levels, and not GluN2 subtype-specific CTD-driven events, are the overriding factor in the developmental switch in NMDAR composition.
机译:总结GluN2亚型(2A对2B)决定了前脑NMDA受体(NMDAR)的生物物理特性和信号传导。在开发过程中,GluN2A被并入以前以GluN2B为主的NMDAR中。提议此“开关”由GluN2细胞质C末端域(CTD)的独特特征驱动,包括GluN2B中独特的CaMKII相互作用位点,该位点驱动从突触中去除。但是,这些模型在内源NMDAR的情况下仍未经测试。我们表明,尽管突变内源性GluN2B CaMKII位点对GluN2B CTD磷酸化具有次要作用,但NMDAR组成的发育变化正常发生,可塑性和突触形成的措施不受影响。此外,这种转换在用GluN2B替代GluN2A CTD的小鼠中正常进行,并且开始时GluN2B水平没有明显下降,但受到了GluN2A单倍剂量不足的损害。因此,GluN2A表达水平而不是GluN2亚型特异性CTD驱动的事件是NMDAR组成中发育转换的首要因素。

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