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Dynamic Changes in ANGUSTIFOLIA3 Complex Composition Reveal a Growth Regulatory Mechanism in the Maize Leaf

机译:ANGUSTIFOLIA3复合物组成的动态变化揭示了玉米叶片中的生长调节机制。

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摘要

Most molecular processes during plant development occur with a particular spatio-temporal specificity. Thus far, it has remained technically challenging to capture dynamic protein-protein interactions within a growing organ, where the interplay between cell division and cell expansion is instrumental. Here, we combined high-resolution sampling of the growing maize (Zea mays) leaf with tandem affinity purification followed by mass spectrometry. Our results indicate that the growth-regulating SWI/SNF chromatin remodeling complex associated with ANGUSTIFOLIA3 (AN3) was conserved within growing organs and between dicots and monocots. Moreover, we were able to demonstrate the dynamics of the AN3-interacting proteins within the growing leaf, since copurified GROWTH-REGULATING FACTORs (GRFs) varied throughout the growing leaf. Indeed, GRF1, GRF6, GRF7, GRF12, GRF15, and GRF17 were significantly enriched in the division zone of the growing leaf, while GRF4 and GRF10 levels were comparable between division zone and expansion zone in the growing leaf. These dynamics were also reflected at the mRNA and protein levels, indicating tight developmental regulation of the AN3-associated chromatin remodeling complex. In addition, the phenotypes of maize plants overexpressing miRNA396a-resistant GRF1 support a model proposing that distinct associations of the chromatin remodeling complex with specific GRFs tightly regulate the transition between cell division and cell expansion. Together, our data demonstrate that advancing from static to dynamic protein-protein interaction analysis in a growing organ adds insights in how developmental switches are regulated.
机译:植物发育过程中的大多数分子过程都具有特定的时空特异性。迄今为止,在生长中的器官中捕获动态蛋白质-蛋白质相互作用仍然在技术上具有挑战性,在该器官中细胞分裂和细胞扩增之间的相互作用是重要的。在这里,我们结合了串联亲和纯化和串联质谱法对正在生长的玉米(Zea mays)叶片进行高分辨率采样。我们的结果表明与ANGUSTIFOLIA3(AN3)相关的生长调节SWI / SNF染色质重塑复合体在生长器官内以及双子叶植物和单子叶植物之间是保守的。此外,由于共纯化的生长调节因子(GRF)在整个生长叶片中都不同,因此我们能够证明生长叶片中与AN3相互作用的蛋白质的动力学。实际上,在生长叶片的划分区域中,GRF1,GRF6,GRF7,GRF12,GRF15和GRF17显着富集,而在生长叶片的划分区域和扩展区域之间,GRF4和GRF10的水平相当。这些动力学也反映在mRNA和蛋白质水平上,表明与AN3相关的染色质重塑复合体的紧密发育调控。另外,过量表达miRNA396a抗性GRF1的玉米植物的表型支持一个模型,该模型提出了染色质重塑复合体与特定GRF的不同关联紧密地调节了细胞分裂和细胞扩增之间的过渡。总之,我们的数据表明,在不断增长的器官中,从静态蛋白质相互作用分析向动态蛋白质相互作用分析的发展,可以进一步了解如何调节发育开关。

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