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Allyl-Isothiocyanate and Microcystin-LR Reveal the Protein Phosphatase Mediated Regulation of Metaphase-Anaphase Transition in Vicia faba

机译:异硫氰酸烯丙基酯和微囊藻毒素-LR揭示了蚕豆中期-后期过渡的蛋白磷酸酶介导调控。

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摘要

Horseradish allyl isothiocyanate (AITC, a volatile oil) and cyanobacterial microcystin-LR (MCY-LR, a cyclic heptapeptide) affect eukaryotic cell cycle. MCY-LR inhibits protein phosphatases PP1 and PP2A. We aimed to reveal the mechanisms of their cellular effects in a model eukaryote, Vicia faba. We have shown for the first time that AITC had minor effects on PP1 and PP2A activities in vitro, but it inhibited significantly PP1 in vivo. The combination of 10 μM AITC with 10 μM MCY-LR induced metaphase arrest after short-term (12 h) treatments. 10 μM AITC, 0.2–10 μM MCY-LR and their combinations induced histone H3 hyperphosphorylation, associated with the regulation of metaphase-anaphase transition. This hyperphosphorylation event occurred at any treatment which led to the inhibition of PP1 activity. 10 μM AITC + 10 μM MCY-LR increased the frequency of metaphase spindle anomalies, associated with metaphase arrest. We provide new insights into the mechanisms of metaphase-anaphase transition. Metaphase arrest is induced at the concomitant hyperphosphorylation of histone H3, alteration of metaphase spindle assembly and strong inhibition of PP1 + PP2A activity. Near-complete blocking of metaphase-anaphase transition by rapid protein phosphatase inhibition is shown here for the first time in plants, confirming a crucial role of serine-threonine phosphatases in this checkpoint of cell cycle regulation. Tissue-dependent differences in PP1 and PP2A activities induced by AITC and MCY-LR suggest that mainly regulatory subunits are affected. AITC is a potential tool for the study of protein phosphatase function and regulation. We raise the possibility that one of the biochemical events occurring during AITC release upon wounding is the modulation of protein phosphatase dependent signal transduction pathways during the plant defense response.
机译:辣根烯丙基异硫氰酸酯(AITC,挥发油)和蓝细菌微囊藻毒素-LR(MCY-LR,环状七肽)会影响真核细胞的周期。 MCY-LR抑制蛋白磷酸酶PP1和PP2A。我们旨在揭示真核生物模型蚕豆中它们的细胞作用机制。我们首次表明AITC在体外对PP1和PP2A活性影响较小,但在体内却显着抑制PP1。短期(12 h)治疗后,将10μMAITC与10μMMCY-LR结合可诱导中期停搏。 10μMAITC,0.2–10μMMCY-LR及其组合诱导组蛋白H3过度磷酸化,与中期-后期转变的调控有关。该过度磷酸化事件在任何导致PP1活性抑制的处理中发生。 10μMAITC + 10μMMCY-LR增加了中期梭形异常的发生频率,与中期停搏有关。我们提供了中期到后期过渡机制的新见解。在组蛋白H3的过度磷酸化,中期纺锤体装配的改变以及对PP1 + PP2A活性的强烈抑制下,诱导了中期停滞。首次在植物中首次显示了通过蛋白质磷酸酶快速抑制作用几乎完全阻断了中期-后期转化,这证实了丝氨酸-苏氨酸磷酸酶在细胞周期调节这一检查点中起着至关重要的作用。 AITC和MCY-LR诱导的PP1和PP2A活性的组织依赖性差异表明,主要调控亚基受到影响。 AITC是研究蛋白质磷酸酶功能和调控的潜在工具。我们提出了这样的可能性,即在受伤时AITC释放期间发生的生化事件之一是在植物防御反应期间调节蛋白磷酸酶依赖性信号转导途径。

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