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Differential Phosphorylation of the Transcription Factor WRKY33 by the Protein Kinases CPK5/CPK6 and MPK3/MPK6 Cooperatively Regulates Camalexin Biosynthesis in Arabidopsis

机译:蛋白激酶CPK5 / CPK6和MPK3 / MPK6通过蛋白质激酶进行差异磷酸化,CPK5 / CPK6和MPK3 / MPK6协同规定拟南芥中的Camalexin生物合成

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The pathogen-responsive protein kinases CPK5/CPK6 and MPK3/MPK6 cooperatively regulate camalexin biosynthesis upon pathogen infection via differential phosphorylation of the transcription factor WRKY33. Camalexin is a major phytoalexin that plays a crucial role in disease resistance in Arabidopsis (Arabidopsis thaliana). We previously characterized the regulation of camalexin biosynthesis by the mitogen-activated protein kinases MPK3 and MPK6 and their downstream transcription factor WRKY33. Here, we report that the pathogen-responsive CALCIUM-DEPENDENT PROTEIN KINASE5 (CPK5) and CPK6 also regulate camalexin biosynthesis in Arabidopsis. Chemically induced expression of constitutively active CPK5 or CPK6 variants was sufficient to induce camalexin biosynthesis in transgenic Arabidopsis plants. Consistently, the simultaneous mutation of CPK5 and CPK6 compromised camalexin production in Arabidopsis induced by the fungal pathogen Botrytis cinerea. Moreover, we identified that WRKY33 functions downstream of CPK5/CPK6 to activate camalexin biosynthetic genes, thereby inducing camalexin biosynthesis. CPK5 and CPK6 interact with WRKY33 and phosphorylate its Thr-229 residue, leading to an increase in the DNA binding ability of WRKY33. By contrast, the MPK3/MPK6-mediated phosphorylation of WRKY33 on its N-terminal Ser residues enhances the transactivation activity of WRKY33. Furthermore, both gain- and loss-of-function genetic analyses demonstrated the cooperative regulation of camalexin biosynthesis by CPK5/CPK6 and MPK3/MPK6. Taken together, these findings indicate that WRKY33 functions as a convergent substrate of CPK5/CPK6 and MPK3/MPK6, which cooperatively regulate camalexin biosynthesis via the differential phospho-regulation of WRKY33 activity.
机译:病原体响应蛋白激酶CPK5 / CPK6和MPK3 / MPK6协同调节Camalexin生物合成,通过转录因子Wrky33的差分磷酸化。 Camalexin是一种主要的植物脂蛋蛋白,在拟南芥(Arabidopsis Thaliana)中起着至关重要的作用。我们以前表征了通过丝裂原激活的蛋白激酶MPK3和MPK6及其下游转录因子Wrky33调节Camalexin生物合成的调节。在此,我们报告称病原体响应性钙依赖性蛋白激酶5(CPK5)和CPK6还调节拟南芥中的Camalexin生物合成。化学诱导的组成型活性CPK5或CPK6变体表达足以在转基因拟南芥植物中诱导卡拉内蛋白生物合成。始终如一地,CPK5和CPK6的同时突变受到真菌病原体Botrytis Cinerea诱导的拟南芥中的CPK5和CPK6受损。此外,我们发现Wrky33在CPK5 / CPK6下游的功能以激活卡拉内蛋白生物合成基因,从而诱导Camalexin生物合成。 CPK5和CPK6与WRKY33相互作用并磷酸化其THR-229残基,导致WRKY33的DNA结合能力增加。相比之下,MPK3 / MPK6介导的WRKY33在其N末端SER残基上的磷酸化增强了WRKY33的转移活性。此外,既有增益和丧失丧失遗传分析都证明CPK5 / CPK6和MPK3 / MPK6的CAMALEXIN生物合作的协同调节。总之,这些发现表明Wrky33用作CPK5 / CPK6和MPK3 / MPK6的收敛基板,其通过WRKY33活性的差分磷酸磷调节协同调节Camalexin生物合成。

著录项

  • 来源
    《The Plant Cell》 |2020年第8期|共18页
  • 作者单位

    Shanghai Normal Univ Coll Life Sci Shanghai Key Lab Plant Mol Sci Shanghai 200234 Peoples R China;

    Shanghai Univ Sch Life Sci Shanghai Key Lab Bioenergy Crops Shanghai 200444 Peoples R China;

    Shanghai Normal Univ Coll Life Sci Shanghai Key Lab Plant Mol Sci Shanghai 200234 Peoples R China;

    Chinese Acad Sci Shanghai Ctr Plant Stress Biol CAS Ctr Excellence Mol Plant Sci Shanghai 201602 Peoples R China;

    Chinese Acad Sci Shanghai Ctr Plant Stress Biol CAS Ctr Excellence Mol Plant Sci Shanghai 201602 Peoples R China;

    Shanghai Normal Univ Coll Life Sci Shanghai Key Lab Plant Mol Sci Shanghai 200234 Peoples R China;

    Univ Missouri Div Biochem Interdisciplinary Plant Grp Bond Life Sci Ctr Columbia MO 65211 USA;

    Shanghai Normal Univ Coll Life Sci Shanghai Key Lab Plant Mol Sci Shanghai 200234 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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