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PP2A-3 interacts with ACR4 and regulates formative cell division in the Arabidopsis root

机译:pp2a-3与拟南芥根中的aCR4和常规形成细胞分裂相互作用

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摘要

In plants, the generation of new cell types and tissues depends on coordinated and oriented formative cell divisions. The plasma membrane-localized receptor kinase ARABIDOPSIS CRINKLY 4 (ACR4) is part of a mechanism controlling formative cell divisions in the Arabidopsis root. Despite its important role in plant development, very little is known about the molecular mechanism with which ACR4 is affiliated and its network of interactions. Here, we used various complementary proteomic approaches to identify ACR4-interacting protein candidates that are likely regulators of formative cell divisions and that could pave the way to unraveling the molecular basis behind ACR4-mediated signaling. We identified PROTEIN PHOSPHATASE 2A-3 (PP2A-3), a catalytic subunit of PP2A holoenzymes, as a previously unidentified regulator of formative cell divisions and as one of the first described substrates of ACR4. Our in vitro data argue for the existence of a tight posttranslational regulation in the associated biochemical network through reciprocal regulation between ACR4 and PP2A-3 at the phosphorylation level.
机译:在植物中,新细胞类型和组织的产生取决于协调和定向的形成性细胞分裂。质膜定位受体激酶ARABIDOPSIS CRINKLY 4(ACR4)是控制拟南芥根中形成性细胞分裂的机制的一部分。尽管它在植物发育中起着重要作用,但对ACR4的分子机制及其相互作用网络知之甚少。在这里,我们使用了各种互补的蛋白质组学方法来鉴定与ACR4相互作用的蛋白候选物,这些蛋白可能是形成性细胞分裂的调节剂,并且可以为阐明ACR4介导的信号传导的分子基础铺平道路。我们确定蛋白质磷酸酶2A-3(PP2A-3),PP2A全酶的催化亚基,是以前无法确定的形成性细胞分裂调节剂,也是最早描述的ACR4底物之一。我们的体外数据表明,通过磷酸化水平上ACR4和PP2A-3之间的相互调节,相关生化网络中存在严格的翻译后调节。

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