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通过 TurboID 介导的邻近标记技术揭示 CTR1 的近端蛋白质组。

Uncovering the proximal proteome of CTR1 through TurboID-mediated proximity labeling.

机构信息

Department of Botany and Plant Pathology, Purdue University, West Lafayette, Indiana, USA.

The Center for Plant Biology, Purdue University, West Lafayette, Indiana, USA.

出版信息

Proteomics. 2024 Mar;24(6):e2300212. doi: 10.1002/pmic.202300212. Epub 2023 Oct 24.

Abstract

Protein-protein interactions play a crucial role in driving cellular processes and enabling appropriate physiological responses in organisms. The plant hormone ethylene signaling pathway is complex and regulated by the spatiotemporal regulation of its signaling molecules. Constitutive Triple Response 1 (CTR1), a key negative regulator of the pathway, regulates the function of Ethylene-Insensitive 2 (EIN2), a positive regulator of ethylene signaling, at the endoplasmic reticulum (ER) through phosphorylation. Our recent study revealed that CTR1 can also translocate from the ER to the nucleus in response to ethylene and positively regulate ethylene responses by stabilizing EIN3. To gain further insights into the role of CTR1 in plants, we used TurboID-based proximity labeling and mass spectrometry to identify the proximal proteomes of CTR1 in Nicotiana benthamiana. The identified proximal proteins include known ethylene signaling components, as well as proteins involved in diverse cellular processes such as mitochondrial respiration, mRNA metabolism, and organelle biogenesis. Our study demonstrates the feasibility of proximity labeling using the N. benthamiana transient expression system and identifies the potential interactors of CTR1 in vivo, uncovering the potential roles of CTR1 in a wide range of cellular processes.

摘要

蛋白质-蛋白质相互作用在驱动细胞过程和使生物体产生适当的生理反应方面起着至关重要的作用。植物激素乙烯信号通路复杂,受其信号分子的时空调节。组成型三重反应 1(CTR1)是该途径的关键负调节剂,通过磷酸化在内质网(ER)上调节乙烯信号的正调节剂 Ethylene-Insensitive 2(EIN2)的功能。我们最近的研究表明,CTR1 也可以响应乙烯从 ER 易位到细胞核,并通过稳定 EIN3 来正向调节乙烯反应。为了更深入地了解 CTR1 在植物中的作用,我们使用 TurboID 为基础的邻近标记和质谱法鉴定了 Nicotiana benthamiana 中 CTR1 的近端蛋白质组。鉴定出的近端蛋白包括已知的乙烯信号成分,以及参与多种细胞过程的蛋白,如线粒体呼吸、mRNA 代谢和细胞器生物发生。我们的研究证明了使用 N. benthamiana 瞬时表达系统进行邻近标记的可行性,并鉴定了 CTR1 在体内的潜在相互作用蛋白,揭示了 CTR1 在广泛的细胞过程中的潜在作用。

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