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Functional evaluation of autism-associated mutations in NHE9

机译:NHE9中自闭症相关突变的功能评估

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NHE9 ( SLC9A9 ) is an endosomal cation/proton antiporter with orthologues in yeast and bacteria. Rare, missense substitutions in NHE9 are genetically linked with autism but have not been functionally evaluated. Here we use evolutionary conservation analysis to build a model structure of NHE9 based on the crystal structure of bacterial NhaA and use it to screen autism-associated variants in the human population first by phenotype complementation in yeast, followed by functional analysis in primary cortical astrocytes from mouse. NHE9 -GFP localizes to recycling endosomes, where it significantly alkalinizes luminal pH, elevates uptake of transferrin and the neurotransmitter glutamate , and stabilizes surface expression of transferrin receptor and GLAST transporter. In contrast, autism-associated variants L236S, S438P and V176I lack function in astrocytes. Thus, we establish a neurobiological cell model of a candidate gene in autism. Loss-of-function mutations in NHE9 may contribute to autistic phenotype by modulating synaptic membrane protein expression and neurotransmitter clearance.
机译:NHE9(SLC9A9)是一种内体阳离子/质子反转运蛋白,在酵母和细菌中具有直向同源物。 NHE9中的罕见错义替换与自闭症在基因上相关,但尚未进行功能评估。在这里,我们使用进化保守性分析,以细菌NhaA的晶体结构为基础,建立NHE9的模型结构,并首先通过酵母的表型互补,然后用于功能性分析,从酵母中筛选出人类自闭症相关变体。老鼠。 NHE9 -GFP定位于可回收的内体,在该处可显着碱化腔内pH,提高转铁蛋白和神经递质谷氨酸的摄取,并稳定转铁蛋白受体和GLAST转运蛋白的表面表达。相反,自闭症相关变体L236S,S438P和V176I在星形胶质细胞中缺乏功能。因此,我们建立了自闭症候选基因的神经生物学细胞模型。 NHE9中的功能丧失突变可能通过调节突触膜蛋白表达和神经递质清除而有助于自闭症表型。

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