核糖体
化学
伴侣(临床)
生物物理学
细胞生物学
易位
细胞器
生物发生
转运蛋白
跨膜蛋白
蛋白质靶向
翻译(生物学)
信号识别粒子
生物
核糖体分析
内质网
胞浆
线粒体
蛋白质生物合成
膜蛋白
蛋白质折叠
信号肽
细菌外膜
蛋白质结构
血浆蛋白结合
细胞内
核糖核蛋白
蛋白质亚细胞定位预测
生物化学
跨膜结构域
结构生物学
调节器
作者
Jae Ho Lee,Laurenz Rabl,Martin Gamerdinger,Vaishali Goyal,Katrin M. Khakzar,Natália M. Barbosa,Juliana Abramovich,Fabián Morales-Polanco,Almut Köhler,Ekaterina Samatova,Marina V. Rodnina,Elke Deuerling,Judith Frydman
出处
期刊:Nature
[Nature Portfolio]
日期:2025-12-22
标识
DOI:10.1038/s41586-025-10058-2
摘要
The nascent polypeptide-associated complex (NAC) is a conserved ribosome-bound factor with essential yet incompletely understood roles in protein biogenesis1. Here, we show that NAC is a multifaceted regulator that coordinates translation elongation, cotranslational folding, and organelle targeting through distinct interactions with nascent polypeptides both inside and outside the ribosome exit tunnel. Using NAC-selective ribosome profiling in C. elegans, we identify thousands of sequence-specific NAC binding events across the nascent proteome, revealing broad cotranslational engagement with hydrophobic and helical motifs in cytosolic, nuclear, ER, and mitochondrial proteins. Unexpectedly, we discover an intra-tunnel sensing mode, where NAC engages ribosomes with extremely short nascent polypeptides inside the exit tunnel in a sequence-specific manner. Moreover, initial NAC interactions induce an early elongation slowdown that tunes ribosome flux and prevent ribosome collisions, linking NAC's chaperone activity to kinetic control of translation. We propose NAC action protects aggregation-prone intermediates by shielding amphipathic helices, thus promoting cytonuclear folding. NAC also supports mitochondrial membrane protein biogenesis and ER targeting by early recognition of signal sequences and transmembrane domain. Our findings establish NAC as an early-acting, multifaceted orchestrator of cotranslational proteostasis, with distinct mechanisms of action on nascent chains depending on their sequence features and subcellular destinations.
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