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细胞器通讯中的多位点蛋白:基于蛋白质-蛋白质相互作用

Multilocation proteins in organelle communication: Based on protein-protein interactions.

作者信息

Xiong Erhui, Cao Di, Qu Chengxin, Zhao Pengfei, Wu Zhaokun, Yin Dongmei, Zhao Quanzhi, Gong Fangping

机构信息

College of Agronomy Henan Agricultural University Zhengzhou China.

出版信息

Plant Direct. 2022 Feb 21;6(2):e386. doi: 10.1002/pld3.386. eCollection 2022 Feb.

Abstract

Protein-protein interaction (PPI) plays a crucial role in most biological processes, including signal transduction and cell apoptosis. Importantly, the knowledge of PPIs can be useful for identification of multimeric protein complexes and elucidation of uncharacterized protein functions. , the best-characterized dicotyledonous plant, the steadily increasing amount of information on the levels of its proteome and signaling pathways is progressively enabling more researchers to construct models for cellular processes for the plant, which in turn encourages more experimental data to be generated. In this study, we performed an overview analysis of the 10 major organelles and their associated proteins of the dicotyledonous model plant via PPI network, and found that PPI may play an important role in organelle communication. Further, multilocation proteins, especially phosphorylation-related multilocation proteins, can function as a "needle and thread" via PPIs and play an important role in organelle communication. Similar results were obtained in a monocotyledonous model crop, rice. Furthermore, we provide a research strategy for multilocation proteins by LOPIT technique, proteomics, and bioinformatics analysis and also describe their potential role in the field of plant science. The results provide a new view that the phosphorylation-related multilocation proteins play an important role in organelle communication and provide new insight into PPIs and novel directions for proteomic research. The research of phosphorylation-related multilocation proteins may promote the development of organelle communication and provide an important theoretical basis for plant responses to external stress.

摘要

蛋白质-蛋白质相互作用(PPI)在大多数生物过程中起着关键作用,包括信号转导和细胞凋亡。重要的是,PPI的知识有助于识别多聚体蛋白复合物并阐明未表征的蛋白质功能。作为特征最明确的双子叶植物,其蛋白质组和信号通路水平上不断增加的信息正逐渐使更多研究人员能够构建该植物细胞过程的模型,这反过来又促使产生更多实验数据。在本研究中,我们通过PPI网络对双子叶模式植物的10种主要细胞器及其相关蛋白进行了概述分析,发现PPI可能在细胞器通讯中发挥重要作用。此外,多位点蛋白,尤其是与磷酸化相关的多位点蛋白,可通过PPI发挥“针线”作用,并在细胞器通讯中发挥重要作用。在单子叶模式作物水稻中也获得了类似结果。此外,我们通过LOPIT技术、蛋白质组学和生物信息学分析提供了一种针对多位点蛋白的研究策略,并描述了它们在植物科学领域的潜在作用。这些结果提供了一个新观点,即与磷酸化相关的多位点蛋白在细胞器通讯中发挥重要作用,为PPI提供了新见解,并为蛋白质组学研究提供了新方向。对与磷酸化相关的多位点蛋白的研究可能会促进细胞器通讯的发展,并为植物对外界胁迫的反应提供重要的理论基础。

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