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Isoprenylcysteine methylation and demethylation regulate abscisic Acid signaling in Arabidopsis

机译:异戊二烯半胱氨酸甲基化和去甲基化调节拟南芥中的脱落酸信号

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摘要

Isoprenylated proteins bear an isoprenylcysteine methyl ester at the C terminus. Although isoprenylated proteins have been implicated in meristem development and negative regulation of abscisic acid (ABA) signaling, the functional role of the terminal methyl group has not been described. Here, we show that transgenic Arabidopsis thaliana plants overproducing isoprenylcysteine methyltransferase (ICMT) exhibit ABA insensitivity in stomatal closure and seed germination assays, establishing ICMT as a negative regulator of ABA signaling. By contrast, transgenic plants overproducing isoprenylcysteine methylesterase (ICME) exhibit ABA hypersensitivity in stomatal closure and seed germination assays. Thus, ICME is a positive regulator of ABA signaling. To test the hypothesis that ABA signaling is under feedback regulation at the level of isoprenylcysteine methylation, we examined the effect of ABA on ICMT and ICME gene expression. Interestingly, ABA induces ICME gene expression, establishing a positive feedback loop whereby ABA promotes ABA responsiveness of plant cells via induction of ICME expression, which presumably results in the demethylation and inactivation of isoprenylated negative regulators of ABA signaling. These results suggest strategies for metabolic engineering of crop species for drought tolerance by targeted alterations in isoprenylcysteine methylation.
机译:异戊二酰化的蛋白质在C末端带有异戊二烯半胱氨酸甲酯。尽管异戊二烯基化蛋白已牵涉到分生组织的发展和脱落酸(ABA)信号的负调控,但尚未描述末端甲基的功能。在这里,我们显示了过量生产异戊二烯半胱氨酸甲基转移酶(ICMT)的转基因拟南芥植物在气孔关闭和种子发芽试验中显示ABA不敏感性,将ICMT建立为ABA信号的负调节剂。相比之下,过量生产异戊二烯半胱氨酸甲酯酶(ICME)的转基因植物在气孔关闭和种子发芽试验中表现出ABA超敏性。因此,ICME是ABA信号转导的正调节剂。为了测试ABA信号在异戊二烯半胱氨酸甲基化水平上受反馈调控的假设,我们检查了ABA对ICMT和ICME基因表达的影响。有趣的是,ABA诱导了ICME基因表达,建立了一个正反馈回路,从而ABA通过诱导ICME表达促进了植物细胞的ABA反应性,这可能导致ABA信号的异戊二烯化负调节剂脱甲基和失活。这些结果表明通过异戊二烯半胱氨酸甲基化的定向改变对作物物种进行代谢工程以耐受干旱的策略。

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