细胞培养中氨基酸的稳定同位素标记
蛋白质组
蛋白质组学
细胞生物学
定量蛋白质组学
蛋白质亚细胞定位预测
内质网
亚细胞定位
生物
蛋白质周转
计算生物学
核糖体
蛋白质生物合成
生物化学
核糖核酸
细胞质
基因
作者
Feng Yuan,Yang Li,Xinyue Zhou,Ping Meng,Peng Zou
标识
DOI:10.1038/s41467-023-42861-8
摘要
Abstract Cellular activities are commonly associated with dynamic proteomic changes at the subcellular level. Although several techniques are available to quantify whole-cell protein turnover dynamics, such measurements often lack sufficient spatial resolution at the subcellular level. Herein, we report the development of prox-SILAC method that combines proximity-dependent protein labeling (APEX2/HRP) with metabolic incorporation of stable isotopes (pulse-SILAC) to map newly synthesized proteins with subcellular spatial resolution. We apply prox-SILAC to investigate proteome dynamics in the mitochondrial matrix and the endoplasmic reticulum (ER) lumen. Our analysis reveals a highly heterogeneous distribution in protein turnover dynamics within macromolecular machineries such as the mitochondrial ribosome and respiratory complexes I-V, thus shedding light on their mechanism of hierarchical assembly. Furthermore, we investigate the dynamic changes of ER proteome when cells are challenged with stress or undergoing stimulated differentiation, identifying subsets of proteins with unique patterns of turnover dynamics, which may play key regulatory roles in alleviating stress or promoting differentiation. We envision that prox-SILAC could be broadly applied to profile protein turnover at various subcellular compartments, under both physiological and pathological conditions.
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