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一种用于突触后支架结构域形成和大小确定的聚集-去除模型。

An aggregation-removal model for the formation and size determination of post-synaptic scaffold domains.

作者信息

Ranft Jonas, Almeida Leandro G, Rodriguez Pamela C, Triller Antoine, Hakim Vincent

机构信息

Laboratoire Physique Statistique, CNRS, Ecole Normale Supérieure, PSL Research University, Université Pierre et Marie Curie, Paris, France.

IBENS, Ecole Normale Supérieure, PSL Research University, CNRS, INSERM, Paris, France.

出版信息

PLoS Comput Biol. 2017 Apr 24;13(4):e1005516. doi: 10.1371/journal.pcbi.1005516. eCollection 2017 Apr.

Abstract

The formation and stability of synapses are key questions in neuroscience. Post-synaptic domains have been classically conceived as resulting from local insertion and turnover of proteins at the synapse. However, insertion is likely to occur outside the post-synaptic domains and advances in single-molecule imaging have shown that proteins diffuse in the plane of the membrane prior to their accumulation at synapses. We quantitatively investigated this scenario using computer simulations and mathematical analysis, taking for definiteness the specific case of inhibitory synapse components, i.e., the glycine receptor (GlyR) and the associated gephyrin scaffolding protein. The observed domain sizes of scaffold clusters can be explained by a dynamic balance between the aggregation of gephyrin proteins diffusing while bound to GlyR and their turnover at the neuron membrane. We also predict the existence of extrasynaptic clusters with a characteristic size distribution that significantly contribute to the size fluctuations of synaptic domains. New super-resolution data for gephyrin proteins established the existence of extrasynaptic clusters the sizes of which are consistent with the model predictions in a range of model parameters. At a general level, our results highlight aggregation with removal as a non-equilibrium phase separation which produces structures of tunable size.

摘要

突触的形成与稳定性是神经科学中的关键问题。传统上认为,突触后结构域是由突触处蛋白质的局部插入和更新所导致的。然而,插入可能发生在突触后结构域之外,并且单分子成像技术的进展表明,蛋白质在积累于突触之前会在膜平面内扩散。我们使用计算机模拟和数学分析对这种情况进行了定量研究,具体以抑制性突触成分,即甘氨酸受体(GlyR)和相关的桥连蛋白支架蛋白为例。观察到的支架簇结构域大小可以通过结合在GlyR上扩散的桥连蛋白的聚集与其在神经元膜上的更新之间的动态平衡来解释。我们还预测了存在具有特征性大小分布的突触外簇,这些簇对突触结构域的大小波动有显著贡献。关于桥连蛋白的新超分辨率数据证实了突触外簇的存在,其大小在一系列模型参数范围内与模型预测一致。总体而言,我们的结果强调了聚合与去除作为一种非平衡相分离过程,它产生了大小可调的结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a144/5421815/e087f0571562/pcbi.1005516.g001.jpg

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