心臓疾患の新治療法に繋がる分子メカニズムを解明(Molecular-level discovery about heart mechanisms could lead to new heart disease treatments)

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2025-06-25 ブラウン大学

Brown大学の研究チームは、心筋細胞におけるタンパク質AIMP3の重要な役割を解明した。マウスからAIMP3を除去すると、炎症や線維化、心不全が発生し致死的となる。AIMP3はMetRSの機能を補完し、異常ホモシステインの蓄積を防ぎながら正常なタンパク質合成を維持する。欠損時には酸化ストレスやミトコンドリア障害が起こり心筋細胞が死滅する。AIMP3は心臓の細胞保護に不可欠であり、将来的な心疾患治療ターゲットとして期待されている。

<関連情報>

AIMP3はメチオニルtRNA合成酵素の編集活性を制御することで心臓の恒常性を維持する AIMP3 maintains cardiac homeostasis by regulating the editing activity of methionyl-tRNA synthetase

Anindhya S. Das,Charles P. Rabolli,Colton R. Martens,Han-Kai Jiang,Yingshen Zhang,Aubree A. Zimmer,Kevin Lin,Kedryn K. Baskin,Juan D. Alfonzo & Federica Accornero
Nature Cardiovascular Research  Published:25 June 2025
DOI:https://doi.org/10.1038/s44161-025-00670-w

心臓疾患の新治療法に繋がる分子メカニズムを解明(Molecular-level discovery about heart mechanisms could lead to new heart disease treatments)

Abstract

In mammals, nine aminoacyl tRNA synthetases (ARSs) and three auxiliary proteins (ARS-interacting multifunctional proteins 1–3 (AIMP1–3)) form the multisynthetase complex (MSC), a molecular hub that provides a subset of aminoacylated tRNAs to the ribosome and partakes in translation-independent signaling. Knowledge of the role of AIMPs in organ physiology is currently limited. AIMP3 (also known as EEF1E1) was proposed to anchor methionyl tRNA synthetase (MetRS) in the complex and regulate protein synthesis through translation initiation and elongation. Here we show that a cardiomyocyte-specific conditional knockout of AIMP3 in mice leads to lethal cardiomyopathy. MetRS localization, aminoacylation efficiency and global protein synthesis were unaffected in our model, suggesting an alternative mechanism for the pathology. We found that AIMP3 is essential for homocysteine editing by MetRS, a reaction that is necessary for the maintenance of translation fidelity. Homocysteine accumulation induced reactive oxygen species production, protein aggregation, mitochondrial dysfunction, autophagy and ultimately cell death.

医療・健康
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