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Chemical activation of Arabidopsis SnRK2.6 by pladienolide B

机译:拟南芥SNRK2.6的化学活化by pladienolide b

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摘要

Abscisic acid (ABA) is an important phytohormone mediating osmotic stress responses. SUCROSE NONFERMENTING 1 (SNF1)-RELATED PROTEIN KINASE 2.6 (SnRK2.6, also named OPEN STOMATA1 and SNF1-RELATED KINASE 2E) is central in the ABA signaling pathway; therefore, manipulating its activity may be useful to confer stress tolerance in plants. Pladienolide B (PB) is an mRNA splicing inhibitor and enhances ABA responses. Here, we analyzed the effect of PB on Arabidopsis SnRK2.6. PB enhanced the activity of recombinant SnRK2.6 in vitro through direct physical interaction as predicted by molecular docking simulations followed by mutation experiments and isothermal titration calorimetry. Structural modeling predicted probable interaction sites between PB and SnRK2.6, and experiments with mutated SnRK2.6 revealed that Leu-46 was the most essential amino acid residue for SnRK2.6 activation by PB. This study demonstrates the feasibility of SnRK2.6 chemical manipulation and paves the way for the modification of plant osmotic stress responses.
机译:脱落酸(ABA)是介导渗透渗透应激反应的重要植物激素。蔗糖纯剂1(SNF1) - 相关蛋白激酶2.6(SNRK2.6,也命名为Open Stophata1和SnF1相关激酶2e)是ABA信号通路中的中心;因此,操纵其活性可用于赋予植物中的应力耐受性。 Pladienolide B(PB)是mRNA剪接抑制剂并增强ABA反应。在这里,我们分析了Pb对拟南芥SNRK2.6的影响。 PB通过通过分子对接模拟预测的直接物理相互作用来增强重组SNRK2.6的活性,然后通过分子对接模拟,然后进行突变实验和等温滴定热量测定。 Pb和SnRK2.6之间的结构建模预测可能的相互作用位点,并突变SNRK2.6的实验表明,Leu-46是通过Pb的SNRK2.6活化的最基氨基酸残基。本研究表明SNRK2.6化学操纵的可行性,并为植物渗透应激反应进行修饰铺平道路。

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