Synome Ltd, Babraham Research Campus, Cambridge, UK.
Florey Institute of Neuroscience and Mental Health, University of Melbourne, Parkville, Victoria, Australia.
Genes Brain Behav. 2021 Jan;20(1):e12723. doi: 10.1111/gbb.12723. Epub 2020 Dec 29.
The postsynaptic terminal of vertebrate excitatory synapses contains a highly conserved multiprotein complex that comprises neurotransmitter receptors, cell-adhesion molecules, scaffold proteins and enzymes, which are essential for brain signalling and plasticity underlying behaviour. Increasingly, mutations in genes that encode postsynaptic proteins belonging to the PSD-95 protein complex, continue to be identified in neurodevelopmental disorders (NDDs) such as autism spectrum disorder, intellectual disability and epilepsy. These disorders are highly heterogeneous, sharing genetic aetiology and comorbid cognitive and behavioural symptoms. Here, by using genetically engineered mice and innovative touchscreen-based cognitive testing, we sought to investigate whether loss-of-function mutations in genes encoding key interactors of the PSD-95 protein complex display shared phenotypes in associative learning, updating of learned associations and reaction times. Our genetic dissection of mice with loss-of-function mutations in Syngap1, Nlgn3, Dlgap1, Dlgap2 and Shank2 showed that distinct components of the PSD-95 protein complex differentially regulate learning, cognitive flexibility and reaction times in cognitive processing. These data provide insights for understanding how human mutations in these genes lead to the manifestation of diverse and complex phenotypes in NDDs.
脊椎动物兴奋性突触后末梢包含一个高度保守的多蛋白复合物,该复合物由神经递质受体、细胞黏附分子、支架蛋白和酶组成,对于大脑信号转导和行为基础的可塑性至关重要。越来越多的证据表明,编码 PSD-95 蛋白复合物中突触后蛋白的基因突变,继续在神经发育障碍(NDD)中被发现,如自闭症谱系障碍、智力障碍和癫痫。这些疾病高度异质,具有遗传病因学和共患认知和行为症状。在这里,我们通过使用基因工程小鼠和创新的基于触摸屏的认知测试,试图研究 PSD-95 蛋白复合物关键相互作用因子编码基因突变的功能丧失是否在联想学习、已学习关联的更新和反应时间方面表现出共同的表型。我们对 Syngap1、Nlgn3、Dlgap1、Dlgap2 和 Shank2 基因功能丧失突变的小鼠进行的遗传剖析表明, PSD-95 蛋白复合物的不同组成部分在认知处理中对学习、认知灵活性和反应时间的调节存在差异。这些数据为理解人类这些基因突变如何导致 NDD 中表现出多样和复杂的表型提供了线索。