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活动诱导的信号素 3A 的分泌介导学习。

Activity-induced secretion of semaphorin 3A mediates learning.

机构信息

Department of Physiology, Yokohama City University Graduate School of Medicine, Yokohama, Japan.

Department of Molecular Pharmacology and Neurobiology, Yokohama City University Graduate School of Medicine, Yokohama, Japan.

出版信息

Eur J Neurosci. 2021 May;53(10):3279-3293. doi: 10.1111/ejn.15210. Epub 2021 Apr 5.

Abstract

The semaphorin family is a well-characterized family of secreted or membrane-bound proteins that are involved in activity-independent neurodevelopmental processes, such as axon guidance, cell migration, and immune functions. Although semaphorins have recently been demonstrated to regulate activity-dependent synaptic scaling, their roles in Hebbian synaptic plasticity as well as learning and memory remain poorly understood. Here, using a rodent model, we found that an inhibitory avoidance task, a hippocampus-dependent contextual learning paradigm, increased secretion of semaphorin 3A in the hippocampus. Furthermore, the secreted semaphorin 3A in the hippocampus mediated contextual memory formation likely by driving AMPA receptors into hippocampal synapses via the neuropilin1-plexin A4-semaphorin receptor complex. This signaling process involves alteration of the phosphorylation status of collapsin response mediator protein 2, which has been characterized as a downstream molecule in semaphorin signaling. These findings implicate semaphorin family as a regulator of Hebbian synaptic plasticity and learning.

摘要

信号蛋白家族是一类特征明确的分泌型或膜结合蛋白家族,参与非活动依赖性神经发育过程,如轴突导向、细胞迁移和免疫功能。虽然信号蛋白最近被证明可以调节活动依赖性突触缩放,但它们在海伯因突触可塑性以及学习和记忆中的作用仍知之甚少。在这里,我们使用啮齿动物模型发现,回避任务,即一种海马依赖性情境学习范式,增加了海马中信号蛋白 3A 的分泌。此外,海马中分泌的信号蛋白 3A 通过神经纤毛蛋白 1- 聚丝蛋白 A4-信号蛋白受体复合物将 AMPA 受体驱动到海马突触中,可能介导情境记忆的形成。这个信号过程涉及到 collapsin 反应介质蛋白 2 的磷酸化状态的改变,该蛋白已被确定为信号蛋白信号的下游分子。这些发现表明信号蛋白家族是海伯因突触可塑性和学习的调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f22/8252788/1a725a0eff6f/EJN-53-3279-g005.jpg

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