基于turboid的细胞器膜蛋白相互作用组与洋地黄苷渗透的映射。

Yang Sun, Lan Yang, Jingzi Zhang, Pu Tian, Shue Chen, Lei Fang, Zhi Hong
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引用次数: 0

摘要

细胞器膜上的蛋白质-蛋白质相互作用将细胞器连接在一起,促进受调节的代谢物交换并维持细胞稳态。酶催化接近标记(PL)已被广泛用于揭示这些相互作用的分子组成,但过度标记不相关的细胞质蛋白使数据分析复杂化。为了解决这个问题,我们开发了一种简化的方案,将TurboID系统与洋地黄苷渗透相结合,以有效地绘制活哺乳动物细胞细胞器膜上的蛋白质相互作用。洋地黄苷选择性地渗透质膜,去除胞质蛋白,同时保持内质膜如内质网和线粒体的完整性。这种方法提高了蛋白质组学分析的空间分辨率,使蛋白质相互作用组的地图更加精确。利用这种方法,我们成功地实现了内质网定位蛋白REEP1和REEP6的近端标记,从而破译了它们的相互作用网络,证明了它在研究膜相关相互作用方面的适用性,并且更清晰、更少污染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TurboID-based mapping of organelle membrane protein interactomes with digitonin-permeabilization.

Protein-protein interactions at organelle membranes bridge organelles in close proximity, facilitating regulated metabolite exchange and maintaining cellular homeostasis. Enzyme-catalyzed proximity labeling (PL) has been widely used to uncover the molecular composition of these interactions, but excessive labeling of irrelevant cytosolic proteins complicates data analysis. To address this, we developed a streamlined protocol that combines the TurboID system with digitonin-permeabilization to efficiently map protein interactions at organelle membranes in live mammalian cells. Digitonin selectively permeabilizes the plasma membrane, removing cytosolic proteins while preserving the integrity of inner membranes like the ER and mitochondria. This approach enhances spatial resolution in proteo-mic analysis, enabling a more precise map for protein interactome. Using this method, we successfully achieved proximal labeling of ER-localized proteins REEP1 and REEP6 to decipher their interaction networks, demonstrating its applicability for studying membrane-associated interactions with greater clarity and reduced contamination.

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