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FUS regulates AMPA receptor function and FTLD/ALS-associated behaviour via GluA1 mRNA stabilization

机译:FUS通过稳定GluA1 mRNA调节AMPA受体功能和FTLD / ALS相关行为

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摘要

FUS is an RNA/DNA-binding protein involved in multiple steps of gene expression and is associated with amyotrophic lateral sclerosis (ALS) and fronto-temporal lobar degeneration (FTLD). However, the specific disease-causing and/or modifying mechanism mediated by FUS is largely unknown. Here we evaluate intrinsic roles of FUS on synaptic functions and animal behaviours. We find that FUS depletion downregulates GluA1, a subunit of AMPA receptor. FUS binds GluA1 mRNA in the vicinity of the 3' terminus and controls poly (A) tail maintenance, thus regulating stability. GluA1 reduction upon FUS knockdown reduces miniature EPSC amplitude both in cultured neurons and in vivo. FUS knockdown in hippocampus attenuates dendritic spine maturation and causes behavioural aberrations including hyperactivity, disinhibition and social interaction defects, which are partly ameliorated by GluA1 reintroduction. These results highlight the pivotal role of FUS in regulating GluA1 mRNA stability, post-synaptic function and FTLD-like animal behaviours.
机译:FUS是涉及基因表达多个步骤的RNA / DNA结合蛋白,与肌萎缩性侧索硬化症(ALS)和额颞叶变性(FTLD)有关。但是,由FUS介导的特定致病和/或改变机制在很大程度上尚不清楚。在这里,我们评估FUS对突触功能和动物行为的内在作用。我们发现FUS耗竭下调了AMPA受体亚基GluA1。 FUS在3'末端附近结合GluA1 mRNA,并控制聚(A)尾巴维持,从而调节稳定性。 FUS敲除后GluA1的减少会降低培养的神经元和体内的微型EPSC振幅。在海马中进行FUS抑制会减弱树突棘的成熟,并导致行为异常,包括活动过度,抑制力下降和社交互动缺陷,而GluA1的重新引入可以部分缓解这种异常。这些结果突出了FUS在调节GluA1 mRNA稳定性,突触后功能和FTLD样动物行为中的关键作用。

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