クライオ電子顕微鏡によりAP-4膜輸送の構造動態を解明 (Cryo-EM Structures Reveal Conformational Dynamics Behind AP-4 Membrane Trafficking)

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2026-01-23 中国科学院(CAS)

中国科学院生物物理研究所の研究チームは、細胞内小胞輸送に重要なアダプタータンパク質複合体AP-4の構造動態と膜リクルート機構を解明した。クライオ電子顕微鏡解析により、AP-4コア複合体は固定的構造ではなく、「閉状態」と「開状態」の間を行き来する動的平衡状態にあることが判明した。この柔軟性はμ4サブユニットとコア骨格の緩やかな相互作用に起因する。さらに、低分子量GTPaseであるARF1はAP-4を単一構造に固定するのではなく、この動的構造景観の中で膜結合を調節することが示された。構造解析、単一分子FRET、生化学・細胞実験を統合した結果、AP-4の構造動態が失われるとATG9A輸送が阻害され、異常局在を引き起こすことが明らかとなった。本研究はAP-4関連神経発達障害の分子基盤理解を前進させる成果である。

クライオ電子顕微鏡によりAP-4膜輸送の構造動態を解明 (Cryo-EM Structures Reveal Conformational Dynamics Behind AP-4 Membrane Trafficking)
Cryo-EM structure of the AP-4 core complex and mechanistic model of its membrane recruitment (Image by FENG Wei’s group)

<関連情報>

AP-4の動的構造とARF1との関連性の構造的基礎 Structural basis for the dynamic conformations of AP-4 and its association with ARF1

Yanghui Wang,Wei Li,Yunlong Qiu,Si Wu,Liu Hong,Yan Zhao & Wei Feng
Nature Communications  Published:21 January 2026
DOI:https://doi.org/10.1038/s41467-026-68679-8

We are providing an unedited version of this manuscript to give early access to its findings. Before final publication, the manuscript will undergo further editing. Please note there may be errors present which affect the content, and all legal disclaimers apply.

Abstract

Among the distinct adaptor protein (AP) complexes, AP-4 primarily functions as a non-clathrin-coated vesicle machinery essential for intracellular membrane trafficking. ARF1 is a master regulator of AP-4 membrane recruitment, but the underlying mechanism remains elusive. Here, we present the cryo-EM structures of soluble AP-4 and the AP-4/ARF1 complex. Unexpectedly, AP-4 adopts a dynamic equilibrium between closed and open conformations, caused by loose contacts between its medium subunit and central core. ARF1 binding induces only subtle changes in AP-4, which retains its conformational equilibrium. Mutations at the AP-4/ARF1 interface disrupt complex formation and impair ARF1-dependent membrane recruitment. Efficient membrane recruitment of AP-4 likely requires the synergistic engagement of ARF1 and cargoes. Disrupting the conformational flexibility of AP-4 interferes with this synergistic effect and compromises AP-4-mediated membrane trafficking. Our findings may redefine AP-4 as a conformationally dynamic complex modulated by cooperative interactions, providing insights into neurodevelopmental disorders associated with AP-4 dysfunction.

生物工学一般
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