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一种作为受体的突触后 Ephrin-B3 的双重塑造机制,用于塑造树突和突触。

A dual shaping mechanism for postsynaptic ephrin-B3 as a receptor that sculpts dendrites and synapses.

机构信息

Department of Developmental Biology, Kent Waldrep Center for Basic Research on Nerve Growth and Regeneration, University of Texas Southwestern Medical Center, Dallas, Texas, USA.

出版信息

Nat Neurosci. 2011 Oct 2;14(11):1421-9. doi: 10.1038/nn.2931.

Abstract

As the neural network becomes wired, postsynaptic signaling molecules are thought to control the growth of dendrites and synapses. However, how these molecules are coordinated to sculpt postsynaptic structures is less well understood. We find that ephrin-B3, a transmembrane ligand for Eph receptors, functions postsynaptically as a receptor to transduce reverse signals into developing dendrites of mouse hippocampal neurons. Both tyrosine phosphorylation-dependent GRB4 SH2/SH3 adaptor-mediated signals and PSD-95-discs large-zona occludens-1 (PDZ) domain-dependent signals are required for inhibition of dendrite branching, whereas only PDZ interactions are necessary for spine formation and excitatory synaptic function. PICK1 and syntenin, two PDZ domain proteins, participate with ephrin-B3 in these postsynaptic activities. PICK1 has a specific role in spine and synapse formation, and syntenin promotes both dendrite pruning and synapse formation to build postsynaptic structures that are essential for neural circuits. The study thus dissects ephrin-B reverse signaling into three distinct intracellular pathways and protein-protein interactions that mediate the maturation of postsynaptic neurons.

摘要

随着神经网络的连接形成,人们认为突触后信号分子可以控制树突和突触的生长。然而,这些分子如何协调来塑造突触后结构还不太清楚。我们发现,Eph 受体的跨膜配体 Ephrin-B3 在突触后作为受体发挥作用,将逆行信号转导到发育中的小鼠海马神经元的树突中。GRB4 SH2/SH3 衔接蛋白介导的信号和 PSD-95-discs large-zona occludens-1 (PDZ) 结构域依赖的信号都需要抑制树突分支,而只有 PDZ 相互作用对于形成棘突和兴奋性突触功能是必需的。两个 PDZ 结构域蛋白 PICK1 和 syntenin 与 Ephrin-B3 一起参与这些突触后活动。PICK1 在棘突和突触形成中有特定的作用,而 syntenin 促进树突修剪和突触形成,构建对神经回路至关重要的突触后结构。因此,该研究将 Ephrin-B 逆行信号转导分解为三个不同的细胞内途径和蛋白质-蛋白质相互作用,从而介导突触后神经元的成熟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2905/3203317/b6968927433a/nihms319146f1.jpg

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