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An abscisic acid-responsive protein interaction network for sucrose non-fermenting related kinase1 in abiotic stress response

机译:用于蔗糖非发酵相关激酶1的异酸响应蛋白相互作用网络,非生物应激反应

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Yeast Snf1 (Sucrose non-fermenting1), mammalian AMPK (5′ AMP-activated protein kinase) and plant SnRK1 (Snf1-Related Kinase1) are conserved heterotrimeric kinase complexes that re-establish energy homeostasis following stress. The hormone abscisic acid (ABA) plays a crucial role in plant stress response. Activation of SnRK1 or ABA signaling results in overlapping transcriptional changes, suggesting these stress pathways share common targets. To investigate how SnRK1 and ABA interact during stress response in Arabidopsis thaliana, we screened the SnRK1 complex by yeast two-hybrid against a library of proteins encoded by 258 ABA-regulated genes. Here, we identify 125 SnRK1- interacting proteins (SnIPs). Network analysis indicates that a subset of SnIPs form signaling modules in response to abiotic stress. Functional studies show the involvement of SnRK1 and select SnIPs in abiotic stress responses. This targeted study uncovers the largest set of SnRK1 interactors, which can be used to further characterize SnRK1 role in plant survival under stress. Carianopol et al. construct a detailed protein interaction network for the SnRK1 kinase complex to investigate the interaction of SnRK1 and ABA during stress response. They identify 125 proteins that interact with SnRK1, which can be used further to characterise the role of SnRK1 in plant survival under stress.
机译:酵母SNF1(蔗糖非发酵体1),哺乳动物AMPK(5'AMP-活化的蛋白激酶)和植物SNRK1(SNF1相关激酶1)是保守的异映型激酶复合物,其在应激后重新建立能量稳态。激素脱落酸(ABA)在植物应激反应中起着至关重要的作用。 SNRK1或ABA信号传导的激活导致重复的转录变化,表明这些应力途径份额份额。为了调查SNRK1和ABA在拟南芥中的应力反应期间的相互作用,我们通过酵母双杂种对由258个ABA调节基因编码的蛋白质库筛选的SNRK1复合物。在此,我们鉴定125个SNRK1 - 相互作用蛋白(剪辑)。网络分析表明,响应非生物应激的剪辑形成信号模块的子集。功能性研究显示SNRK1的累及,选择非生物应激反应中的剪裁。该有针对性的研究揭示了最大的SNRK1交流剂,可用于在压力下的植物存活中进一步表征SNRK1作用。 Carianopol等人。构建用于SNRK1激酶复合物的详细蛋白质相互作用网络,以研究SNRK1和ABA在应力响应期间的相互作用。它们鉴定125个与SNRK1相互作用的蛋白质,其可以进一步用于表征SNRK1在植物存活下的应力下的作用。

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