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An Epilepsy-Associated GRIN2A Rare Variant Disrupts CaMKIIα Phosphorylation of GluN2A and NMDA Receptor Trafficking

机译:癫痫相关的Grin2a罕见变种破坏了Glun2a和NMDA受体贩运的Camkiiα磷酸化

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Rare variants in GRIN genes, which encode NMDAR subunits, are strongly associated with neurodevelopmental disorders. Among these, GRIN2A , which encodes the GluN2A subunit of NMDARs, is widely accepted as an epilepsy-causative gene. Here, we functionally characterize the de novo GluN2A-S1459G mutation identified in an epilepsy patient. We show that S1459 is a CaMKIIα phosphorylation site, and that endogenous phosphorylation is regulated during development and in response to synaptic activity in a dark rearing model. GluN2A-S1459 phosphorylation results in preferential binding of NMDARs to SNX27 and a corresponding decrease in PSD-95 binding, which consequently regulates NMDAR trafficking. Furthermore, the epilepsy-associated GluN2A-S1459G variant displays defects in interactions with both SNX27 and PSD-95, resulting in trafficking deficits, reduced spine density, and decreased excitatory synaptic transmission. These data demonstrate a role for CaMKIIα phosphorylation of GluN2A in receptor targeting and implicate NMDAR trafficking defects as a link to epilepsy.
机译:编码NMDAR亚基的胶质基因中的罕见变体与神经发育障碍密切相关。其中,编码Nmdars的Glun2a亚基的Grin2a被广泛接受作为癫痫造成基因。在这里,我们在癫痫患者中鉴定的DE NovoGLUN2A-S1459G突变表征。我们表明S1459是Camkiiα磷酸化位点,并且在发育过程中调节内源性磷酸化并响应于暗饲养模型中的突触活性。 GLUN2A-S1459磷酸化导致NMDARS对SNX27的优先结合,并且PSD-95结合的相应降低,因此调节NMDAR贩运。此外,癫痫相关的GLUN2A-S1459G变体显示与SNX27和PSD-95相互作用的缺陷,导致贩运缺陷,降低脊柱密度和减少兴奋性突触传输。这些数据表明了Camkiiα磷酸化在受体靶向中的磷酸化,并将NMDAR贩运缺陷归因于癫痫的链接。

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