脳が「何を記憶するか」を決める神経メカニズムを解明(How the brain decides what to remember)

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2025-11-26 ロックフェラー大学

ロックフェラー大学の研究チームは、脳が「何を記憶し、何を捨てるか」をどのように判断しているのかを解明する重要な仕組みを発見した。研究者らは、意思決定に関わる前頭葉皮質と記憶を司る海馬の神経活動を同時記録し、動物が学習中に「重要な情報」と「無関係な情報」を区別する過程を解析。その結果、前頭前皮質(PFC)が海馬に対して“保持すべき情報”を選別するトップダウン信号を送り、PFC の活動が強い瞬間に遭遇した情報ほど、海馬で長期記憶として固定化されやすいことが判明した。また、この選別機構は注意や動機づけと連動し、情報価値を判断して記憶を効率化する役割を果たしていた。本成果は、注意障害、PTSD、加齢性記憶障害など、記憶の選択性が乱れる疾患の治療的手がかりにつながる。

<関連情報>

視床皮質転写ゲートが記憶の安定化を調整する Thalamocortical transcriptional gates coordinate memory stabilization

Andrea Terceros,Celine Chen,Yujin Harada,Tim Eilers,Millennium Gebremedhin,Pierre-Jacques Hamard,Richard Koche,Roshan Sharma & Priya Rajasethupathy
Nature  Published:26 November 2025
DOI:https://doi.org/10.1038/s41586-025-09774-6

脳が「何を記憶するか」を決める神経メカニズムを解明(How the brain decides what to remember)

Abstract

The molecular mechanisms that enable memories to persist over long timescales from days to weeks and months are still poorly understood1. Here, to develop insights into this process, we created a behavioural task in which mice formed multiple memories but only consolidated some, while forgetting others, over the span of weeks. We then monitored circuit-specific molecular programs that diverged between consolidated and forgotten memories. We identified multiple distinct waves of transcription, that is, cellular macrostates, in the thalamocortical circuit that defined memory persistence. Of note, a small set of transcriptional regulators orchestrated broad molecular programs that enabled entry into these macrostates. Targeted CRISPR-knockout studies revealed that although these transcriptional regulators had no effects on memory formation, they had prominent, causal and strikingly time-dependent roles in memory stabilization. In particular, the calmodulin-dependent transcription factor CAMTA1 was required for initial memory maintenance over days, whereas the transcription factor TCF4 and the histone methyltransferase ASH1L were required later to maintain memory over weeks. These results identify a critical CAMTA1–TCF4–ASH1L thalamocortical transcriptional cascade that is required for memory stabilization and put forth a model in which the sequential recruitment of circuit-specific transcriptional programs enables memory maintenance over progressively longer timescales.

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