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Geminivirus infection up-regulates the expression of two Arabidopsis protein kinases related to yeast SNF1-and mammalian AMPK-activating kinases

机译:双子病毒感染上调与酵母SNF1和哺乳动物AMPK激活激酶有关的两个拟南芥蛋白激酶的表达

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Geminivirus Rep-interacting kinase 1 (GRIK1) and GRIK2 constitute a small protein kinase family in Arabidopsis (Arabidopsis thaliana). An earlier study showed that a truncated version of GRIK1 binds to the geminivirus replication protein AL1. We show here both full-length GRIK1 and GRIK2 interact with AL1 in yeast two-hybrid studies. Using specific antibodies, we showed that both Arabidopsis kinases are elevated in infected leaves. Immunoblot analysis of healthy plants revealed that GRIK1 and GRIK2 are highest in young leaf and floral tissues and low or undetectable in mature tissues. Immunohistochemical staining showed that the kinases accumulate in the shoot apical meristem, leaf primordium, and emerging petiole. Unlike the protein patterns, GRIK1 and GRIK2 transcript levels only show a small increase during infection and do not change significantly during development. Treating healthy seedlings and infected leaves with the proteasome inhibitor MG132 resulted in higher GRIK1 and GRIK2 protein levels, whereas treatment with the translation inhibitor cycloheximide reduced both kinases, demonstrating that their accumulation is modulated by posttranscriptional processes. Phylogenetic comparisons indicated that GRIK1, GRIK2, and related kinases from Medicago truncatula and rice (Oryza sativa) are most similar to the yeast kinases PAK1, TOS3, and ELM1 and the mammalian kinase CaMKK, which activate the yeast kinase SNF1 and its mammalian homolog AMPK, respectively. Complementation studies using a PAK1/TOS3/ELM1 triple mutant showed that GRIK1 and GRIK2 can functionally replace the yeast kinases, suggesting that the Arabidopsis kinases mediate one or more processes during early plant development and geminivirus infection by activating SNF1-related kinases.
机译:Geminivirus Rep相互作用激酶1(GRIK1)和GRIK2在拟南芥(Arabidopsis thaliana)中构成一个小的蛋白激酶家族。较早的研究表明,GRIK1的截短版本与双生病毒复制蛋白AL1结合。我们在这里显示了全长GRIK1和GRIK2在酵母双杂交研究中均与AL1相互作用。使用特异性抗体,我们显示了两种拟南芥激酶在受感染的叶片中均升高。对健康植物的免疫印迹分析表明,GRIK1和GRIK2在幼叶和花组织中最高,而在成熟组织中则较低或无法检测到。免疫组织化学染色显示,激酶在茎尖分生组织,叶片原基和新兴的叶柄中积累。与蛋白质模式不同,GRIK1和GRIK2转录水平在感染过程中仅显示少量增加,而在发育过程中变化不大。用蛋白酶体抑制剂MG132处理健康的幼苗和感染的叶片会导致较高的GRIK1和GRIK2蛋白水平,而用翻译抑制剂环己酰亚胺处理会降低这两种激酶,表明它们的积累受转录后过程的调节。系统发育比较表明,来自IK藜苜蓿和水稻(Oryza sativa)的GRIK1,GRIK2和相关激酶与酵母激酶PAK1,TOS3和ELM1以及哺乳动物激酶CaMKK最相似,后者可激活酵母激酶SNF1及其哺乳动物同源物AMPK。 , 分别。使用PAK1 / TOS3 / ELM1三重突变体的补充研究表明,GRIK1和GRIK2可以在功能上替代酵母激酶,表明拟南芥激酶通过激活SNF1相关激酶介导植物早期发育和双生病毒感染的一个或多个过程。

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