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首页> 外文期刊>Nature Communications >The intellectual disability protein RAB39B selectively regulates GluA2 trafficking to determine synaptic AMPAR composition
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The intellectual disability protein RAB39B selectively regulates GluA2 trafficking to determine synaptic AMPAR composition

机译:智力残疾蛋白RAB39B选择性调节GluA2转运以确定突触AMPAR组成

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摘要

RAB39B is a member of the RAB family of small GTPases that controls intracellular vesicular trafficking in a compartment-specific manner. Mutations in the RAB39B gene cause intellectual disability comorbid with autism spectrum disorder and epilepsy, but the impact of RAB39B loss of function on synaptic activity is largely unexplained. Here we show that protein interacting with C-kinase 1 (PICK1) is a downstream effector of GTP-bound RAB39B and that RAB39B-PICK1 controls trafficking from the endoplasmic reticulum to the Golgi and, hence, surface expression of GluA2, a subunit of alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid receptors (AMPARs). The role of AMPARs in synaptic transmission varies depending on the combination of subunits (GluA1, GluA2 and GluA3) they incorporate. RAB39B downregulation in mouse hippocampal neurons skews AMPAR composition towards non GluA2-containing Ca2+-permeable forms and thereby alters synaptic activity, specifically in hippocampal neurons. We posit that the resulting alteration in synaptic function underlies cognitive dysfunction in RAB39B-related disorders.
机译:RAB39B是小GTPases的RAB家族的成员,该小GTPases以隔室特异性方式控制细胞内水泡运输。 RAB39B基因的突变会导致智力障碍,并伴有自闭症谱系障碍和癫痫病,但RAB39B功能丧失对突触活性的影响尚无法解释。在这里,我们显示与C激酶1(PICK1)相互作用的蛋白质是GTP结合的RAB39B的下游效应物,并且RAB39B-PICK1控制从内质网向高尔基体的运输,并因此控制GluA2(α的一个亚基)的表面表达-氨基-3-羟基-5-甲基-4-异恶唑丙酸受体(AMPAR)。 AMPAR在突触传递中的作用取决于它们所掺入的亚基(GluA1,GluA2和GluA3)的组合。小鼠海马神经元中的RAB39B下调使AMPAR成分偏向不含GluA2的Ca2 +可渗透形式,从而改变了突触活性,特别是在海马神经元中。我们认为,导致的突触功能改变是RAB39B相关疾病的认知功能障碍的基础。

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