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自噬体的树突状分布是 LTD 通路选择性诱导的基础。

Dendritic distribution of autophagosomes underlies pathway-selective induction of LTD.

机构信息

Section on Synapse Development Plasticity, National Institute of Mental Health, National Institutes of Health, Bethesda, MD 20892, USA; Department of Neuroscience, Brown University, Providence, RI 02912, USA.

Section on Synapse Development Plasticity, National Institute of Mental Health, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Cell Rep. 2023 Aug 29;42(8):112898. doi: 10.1016/j.celrep.2023.112898. Epub 2023 Jul 28.

Abstract

The mechanism of long-term depression (LTD), a cellular substrate for learning, memory, and behavioral flexibility, is extensively studied in Schaffer collateral (SC) synapses, with inhibition of autophagy identified as a key factor. SC inputs terminate at basal and proximal apical dendrites, whereas distal apical dendrites receive inputs from the temporoammonic pathway (TAP). Here, we demonstrate that TAP and SC synapses have a shared LTD mechanism reliant on NMDA receptors, caspase-3, and autophagy inhibition. Despite this shared LTD mechanism, proximal apical dendrites contain more autophagosomes than distal apical dendrites. Additionally, unlike SC LTD, which diminishes with age, TAP LTD persists into adulthood. Our previous study shows that the high autophagy in adulthood disallows SC LTD induction. The reduction of autophagosomes from proximal to distal dendrites, combined with distinct LTD inducibility at SC and TAP synapses, suggests a model where the differential distribution of autophagosomes in dendrites gates LTD inducibility at specific circuits.

摘要

长时程压抑(LTD)的机制是学习、记忆和行为灵活性的细胞基础,在 Schaffer 侧枝(SC)突触中得到了广泛研究,其中自噬抑制被确定为关键因素。SC 输入终止于基底和近端顶树突,而远端顶树突接收来自颞侧弓状束(TAP)的输入。在这里,我们证明 TAP 和 SC 突触具有依赖于 NMDA 受体、半胱天冬酶-3 和自噬抑制的共同 LTD 机制。尽管存在这种共同的 LTD 机制,但近端顶树突比远端顶树突含有更多的自噬体。此外,与随年龄增长而减弱的 SC LTD 不同,TAP LTD 持续到成年期。我们之前的研究表明,成年期高自噬会阻止 SC LTD 的诱导。自噬体从近端到远端树突的减少,以及 SC 和 TAP 突触中独特的 LTD 诱导能力,表明一种模型,其中树突中自噬体的差异分布控制特定回路 LTD 的诱导能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2241/10528062/2d22639658a4/nihms-1928252-f0002.jpg

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