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利用酵母双杂交系统分析水稻丝裂原活化蛋白激酶相互作用组。

Rice mitogen-activated protein kinase interactome analysis using the yeast two-hybrid system.

机构信息

Department of Molecular Biology, College of Life Sciences, Sejong University, Gunja-dong, Gwangjin-gu, Seoul 143-747, Republic of Korea.

出版信息

Plant Physiol. 2012 Sep;160(1):477-87. doi: 10.1104/pp.112.200071. Epub 2012 Jul 11.

DOI:10.1104/pp.112.200071
PMID:22786887
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3440221/
Abstract

Mitogen-activated protein kinase (MAPK) cascades support the flow of extracellular signals to intracellular target molecules and ultimately drive a diverse array of physiological functions in cells, tissues, and organisms by interacting with other proteins. Yet, our knowledge of the global physical MAPK interactome in plants remains largely fragmented. Here, we utilized the yeast two-hybrid system and coimmunoprecipitation, pull-down, bimolecular fluorescence complementation, subcellular localization, and kinase assay experiments in the model crop rice (Oryza sativa) to systematically map what is to our knowledge the first plant MAPK-interacting proteins. We identified 80 nonredundant interacting protein pairs (74 nonredundant interactors) for rice MAPKs and elucidated the novel proteome-wide network of MAPK interactors. The established interactome contains four membrane-associated proteins, seven MAP2Ks (for MAPK kinase), four MAPKs, and 59 putative substrates, including 18 transcription factors. Several interactors were also validated by experimental approaches (in vivo and in vitro) and literature survey. Our results highlight the importance of OsMPK1, an ortholog of tobacco (Nicotiana benthamiana) salicyclic acid-induced protein kinase and Arabidopsis (Arabidopsis thaliana) AtMPK6, among the rice MAPKs, as it alone interacts with 41 unique proteins (51.2% of the mapped MAPK interaction network). Additionally, Gene Ontology classification of interacting proteins into 34 functional categories suggested MAPK participation in diverse physiological functions. Together, the results obtained essentially enhance our knowledge of the MAPK-interacting protein network and provide a valuable research resource for developing a nearly complete map of the rice MAPK interactome.

摘要

丝裂原活化蛋白激酶(MAPK)级联反应支持细胞外信号向细胞内靶分子的传递,通过与其他蛋白质相互作用,最终驱动细胞、组织和生物体中多样化的生理功能。然而,我们对植物中全局物理 MAPK 相互作用组的认识仍然很大程度上是零散的。在这里,我们利用酵母双杂交系统和免疫共沉淀、下拉、双分子荧光互补、亚细胞定位和激酶测定实验,在模式作物水稻(Oryza sativa)中系统地绘制了据我们所知的第一个植物 MAPK 相互作用蛋白。我们鉴定了 80 个非冗余的相互作用蛋白对(74 个非冗余相互作用蛋白)用于水稻 MAPKs,并阐明了新的 MAPK 相互作用蛋白的全蛋白质组网络。建立的相互作用组包含四个膜相关蛋白、七个 MAP2K(MAPK 激酶)、四个 MAPK 和 59 个假定的底物,包括 18 个转录因子。一些相互作用蛋白也通过实验方法(体内和体外)和文献调查进行了验证。我们的结果强调了 OsMPK1 的重要性,它是烟草(Nicotiana benthamiana)水杨酸诱导蛋白激酶和拟南芥(Arabidopsis thaliana)AtMPK6 的同源物,在水稻 MAPKs 中,它单独与 41 个独特的蛋白相互作用(映射的 MAPK 相互作用网络的 51.2%)。此外,将相互作用蛋白按 34 个功能类别进行基因本体分类,表明 MAPK 参与了多种生理功能。总的来说,这些结果极大地增强了我们对 MAPK 相互作用蛋白网络的认识,并为开发水稻 MAPK 相互作用组的近乎完整图谱提供了有价值的研究资源。

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Rice OsACDR1 (Oryza sativa accelerated cell death and resistance 1) is a potential positive regulator of fungal disease resistance.水稻 OsACDR1(水稻加速细胞死亡和抗性 1)是一种潜在的真菌病抗性的正调控因子。
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