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The proteomes of neurotransmitter receptor complexes form modular networks with distributed functionality underlying plasticity and behaviour

机译:神经递质受体复合物的蛋白质组形成具有可塑性和行为基础的分布式功能的模块化网络

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摘要

Neuronal synapses play fundamental roles in information processing, behaviour and disease. Neurotransmitter receptor complexes, such as the mammalian N-methyl-D-aspartate receptor complex (NRC/MASC) comprising 186 proteins, are major components of the synapse proteome. Here we investigate the organisation and function of NRC/MASC using a systems biology approach. Systematic annotation showed that the complex contained proteins implicated in a wide range of cognitive processes, synaptic plasticity and psychiatric diseases. Protein domains were evolutionarily conserved from yeast, but enriched with signalling domains associated with the emergence of multicellularity. Mapping of protein–protein interactions to create a network representation of the complex revealed that simple principles underlie the functional organisation of both proteins and their clusters, with modularity reflecting functional specialisation. The known functional roles of NRC/MASC proteins suggest the complex co-ordinates signalling to diverse effector pathways underlying neuronal plasticity. Importantly, using quantitative data from synaptic plasticity experiments, our model correctly predicts robustness to mutations and drug interference. These studies of synapse proteome organisation suggest that molecular networks with simple design principles underpin synaptic signalling properties with important roles in physiology, behaviour and disease.
机译:神经元突触在信息处理,行为和疾病中起基本作用。神经递质受体复合物,例如包含186种蛋白质的哺乳动物N-甲基-D-天冬氨酸受体复合物(NRC / MASC),是突触蛋白质组的主要组成部分。在这里,我们使用系统生物学方法研究NRC / MASC的组织和功能。系统注释表明,该复合物含有与多种认知过程,突触可塑性和精神疾病有关的蛋白质。蛋白质结构域从酵母进化上是保守的,但是富含与多细胞性出现相关的信号结构域。绘制蛋白质-蛋白质相互作用以创建复合物的网络表示图表明,简单原理是蛋白质及其簇的功能组织的基础,模块化反映了功能专业化。 NRC / MASC蛋白的已知功能作用表明,复杂的坐标信号传递至潜在的神经元可塑性效应途径。重要的是,使用来自突触可塑性实验的定量数据,我们的模型可以正确预测对突变和药物干扰的鲁棒性。这些对突触蛋白质组结构的研究表明,具有简单设计原理的分子网络支撑着突触信号传导特性,在生理,行为和疾病中具有重要作用。

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