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小鼠海马体CA2区突触中长时程抑制的差异表达以及突触标记与捕获

Differential expression of long-term depression, and synaptic tagging and capture in mouse hippocampal area CA2 synapses.

作者信息

Wang Zijun, Wong Lik-Wei, Sajikumar Sreedharan

机构信息

Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore 117597, Singapore.

Life Science Institute Neurobiology Programme, National University of Singapore, Singapore 117456, Singapore.

出版信息

PNAS Nexus. 2025 Jul 29;4(8):pgaf241. doi: 10.1093/pnasnexus/pgaf241. eCollection 2025 Aug.

Abstract

CA2 hippocampal neurons have received renewed interest due to their unique functions and plasticity properties that differ between synapses within the same neuronal population. However, detailed studies on long-term depression (LTD) in CA2 pyramidal neurons are lacking. In this study, LTD was induced and characterized at both Schaffer collateral-CA2 (SC-CA2) and entorhinal cortex-CA2 (EC-CA2) synapses in young, male mice. This LTD was found to be dependent on N-methyl-D-aspartate receptors, protein synthesis, and p75 neurotrophin receptors. However, weaker stimulations could only induce early LTD in EC-CA2 but not SC-CA2 synapses, consistent with its "plasticity-resistant" nature. CA2 LTD is capable of undergoing heterosynaptic synaptic tagging and capture (STC), although the machinery involved differs between SC-CA2 and EC-CA2 synapses. SC-CA2, but not EC-CA2, requires precursor brain-derived neurotrophic factor activity to maintain LTD. Subsequently, quantitative shotgun proteomics analysis yields complexin-2 as a strong candidate plasticity-related product involved in LTD in the CA2. These results reveal interesting differences in STC machinery between synaptic populations of a common set of neurons, enhancing our understanding of hippocampal circuitry involving the CA2. Interesting implications regarding the heterogeneous biochemical makeup of CA2 pyramidal neurons and fundamental STC theory that arise as a consequent of our results are also discussed further.

摘要

由于CA2海马神经元具有独特的功能和可塑性特性,且同一神经元群体内的突触之间存在差异,因此它们重新引起了人们的关注。然而,目前缺乏对CA2锥体神经元长期抑制(LTD)的详细研究。在本研究中,我们在年轻雄性小鼠的Schaffer侧支-CA2(SC-CA2)和内嗅皮层-CA2(EC-CA2)突触处诱导并表征了LTD。结果发现,这种LTD依赖于N-甲基-D-天冬氨酸受体、蛋白质合成和p75神经营养因子受体。然而,较弱的刺激只能在EC-CA2突触而非SC-CA2突触中诱导早期LTD,这与其“抗可塑性”性质一致。CA2 LTD能够进行异突触突触标记和捕获(STC),尽管SC-CA2和EC-CA2突触所涉及的机制有所不同。SC-CA2而非EC-CA2需要前体脑源性神经营养因子的活性来维持LTD。随后,定量鸟枪法蛋白质组学分析得出,complexin-2是参与CA2中LTD的一种强有力的可塑性相关候选产物。这些结果揭示了一组共同神经元的突触群体之间在STC机制上的有趣差异,加深了我们对涉及CA2的海马回路的理解。我们还进一步讨论了由我们的结果所引发的关于CA2锥体神经元异质生化组成和基本STC理论的有趣含义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f458/12344489/651e33349a8a/pgaf241f1.jpg

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