多能性と初期胚発生の鍵となるマイクロタンパク質PLUMを同定(Researchers Identify PLUM as Key Microprotein in Pluripotency and Early Embryonic Development)

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2025-12-08 中国科学院(CAS)

中国科学院広州生物医薬・健康研究院の劉新国教授らは、多能性関連因子Lin28bの5′UTRに存在する非典型ORF(uORF)から、85アミノ酸の新規マイクロタンパク質「PLUM」が翻訳されることを発見した。PLUMを欠損させると、マウスのプライム型多能性幹細胞がほぼ100%の効率でナイーブ型へ転換し、同時に胚の着床障害が生じた。PLUMはRNA結合タンパク質L1td1と相互作用し、細胞質凝縮体やPボディ形成を制御することで、RNA安定性とミトコンドリア代謝を調節する。本研究は、非典型ORF由来マイクロタンパク質が多能性制御と初期胚発生に直接関与することを初めて示した。

<関連情報>

Lin28b uORFによってコードされるマイクロタンパク質PLUMは、多能性と胚発生の細胞質決定因子である Microprotein PLUM encoded by Lin28b uORF is a cytoplasmic determinant of pluripotency and embryonic development

Zhihong Hao,Yi Wu,Yile Huang,Maolei Zhang,Yang Liu,Yueqiao Li,Wenxin Li,Zifeng Ruan,Jian Zhang,Yingzhe Ding,Linpeng Li,Guangsuo Xing,Zichao Liu,Yanshuang Zhou,Qi Wang,Keshi Chen,Wuming Wang,Gang Lu,Dajiang Qin,Wai-Yee Chan & Xingguo Liu
Nature Communications  Published:26 November 2025
DOI:https://doi.org/10.1038/s41467-025-66297-4

多能性と初期胚発生の鍵となるマイクロタンパク質PLUMを同定(Researchers Identify PLUM as Key Microprotein in Pluripotency and Early Embryonic Development)

Abstract

The crosstalk between translation and metabolism is fundamental for cellular plasticity. While most studies focus on translation within canonical coding regions, the roles of non-canonical open reading frames (ORFs) in metabolic regulation and early development remain unclear. Here, we show that selective translation of an upstream ORF in the 5′ untranslated region (UTR) of Lin28b produces an 85-amino acid microprotein, PLUM (pluripotency-associated Lin28b uORF-encoded microprotein). Depletion of PLUM leads to deterministic and synchronized (near 100%) induction of naïve pluripotency and causes embryo implantation defects in vivo. Mechanistically, PLUM depletion dissolves L1td1 condensates and enhances L1td1 binding to pluripotency mRNAs such as Tfcp2l1 and Zfp42, stabilizing them and promoting coordinated gene activation. Concurrently, PLUM loss disrupts P-bodies enriched with a subset of nuclear-encoded mitochondrial mRNA, potentially preventing their degradation. Together, these alterations trigger an early burst of mitochondrial oxidative phosphorylation and synchronized naïve gene expression, accelerating acquisition of the naïve state. Our study identifies the novel uORF-encoded microprotein PLUM as a pluripotency determinant integrating RNA regulation and metabolic remodeling.

細胞遺伝子工学
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