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AtMPK6 诱导的 AtERF72 磷酸化增强了其 DNA 结合活性,并与拟南芥中的 TGA4/OBF4 相互作用。

AtMPK6-induced phosphorylation of AtERF72 enhances its DNA binding activity and interaction with TGA4/OBF4 in Arabidopsis.

机构信息

Team of Vulnerable Ecological Research, Division of Climate and Ecology, Bureau of Conservation & Assessment Research, National Institute of Ecology, Seocheon, Republic of Korea.

Division of Applied Life Science (BK21 Plus Program), Plant Molecular Biology and Biotechnology Research Center, Gyeongsang National University, Jinju, Republic of Korea.

出版信息

Plant Biol (Stuttg). 2021 Jan;23(1):11-20. doi: 10.1111/plb.13196. Epub 2020 Nov 20.

Abstract

The ethylene-responsive element binding factor (ERF) family is a large family of transcription factors involved in plant development and environmental stress responses. We previously reported the identification of 29 putative substrates of Mitogen-activated Protein Kinase3 (AtMPK3), AtMPK4 and AtMPK6, based on a solid-phase phosphorylation screening using a lambda phage expression library in Arabidopsis thaliana. In this study, a putative MPK substrate, AtERF72 (At3g16770), was strongly phosphorylated by AtMPK6 on the serine residue at position 151 (Ser151). AtERF72 binds to the GCC box (AGCCGCC) in the promoters of several pathogenesis-related (PR) genes and activates their transcription. We also show that the DNA-binding activity of AtERF72 is enhanced upon phosphorylation by AtMPK6 in vitro. In addition, transient co-expression experiments in Arabidopsis protoplasts revealed that effector constructs expressing a mutant variant of AtERF72, AtERF72 (carrying a Ser to aspartic acid [Asp] substitution at amino acid position 151) showed higher expression of the β-glucuronidase (GUS) reporter gene driven by the GCC box element than effector constructs expressing the wild-type AtERF72. Furthermore, yeast two-hybrid assays revealed that the interaction between AtERF72 and TGA4/OBF4 was stronger than that between wild-type AtERF72 and TGA4/OBF4. Since AtERF72 is equivalent to AtERF72 phosphorylated by AtMPK6 at Ser151, these results suggest that the phosphorylation of AtERF72 by AtMPK6 triggers an event of transcriptional regulation from defence signalling in Arabidopsis.

摘要

乙烯响应元件结合因子(ERF)家族是一个庞大的转录因子家族,参与植物发育和环境胁迫反应。我们之前报道了基于拟南芥λ噬菌体表达文库的固相磷酸化筛选,鉴定了 29 种丝裂原活化蛋白激酶 3(AtMPK3)、AtMPK4 和 AtMPK6 的假定底物。在这项研究中,一个假定的 MPK 底物 AtERF72(At3g16770),在丝氨酸残基 151 位(Ser151)被 AtMPK6 强烈磷酸化。AtERF72 结合到几个病程相关(PR)基因启动子中的 GCC 框(AGCCGCC),并激活它们的转录。我们还表明,AtMPK6 在体外对 AtERF72 的磷酸化增强了其 DNA 结合活性。此外,在拟南芥原生质体中的瞬时共表达实验表明,表达 AtERF72 突变体的效应物构建体(在氨基酸位置 151 处的丝氨酸突变为天冬氨酸[Asp])比表达野生型 AtERF72 的效应物构建体表现出更高的由 GCC 框元件驱动的β-葡萄糖醛酸酶(GUS)报告基因的表达。此外,酵母双杂交试验表明,AtERF72 与 TGA4/OBF4 的相互作用强于野生型 AtERF72 与 TGA4/OBF4 的相互作用。由于 AtERF72 相当于 AtMPK6 在 Ser151 处磷酸化的 AtERF72,这些结果表明 AtMPK6 对 AtERF72 的磷酸化触发了拟南芥防御信号转导中的转录调控事件。

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