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首页> 外文期刊>The Plant Cell >SPX4 negatively regulates phosphate signaling and homeostasis through its interaction with PHR2 in rice.
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SPX4 negatively regulates phosphate signaling and homeostasis through its interaction with PHR2 in rice.

机译:SPX4通过与水稻中的PHR2相互作用来负调控磷酸信号和稳态。

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PHR2, a central regulator of phosphate signaling in rice, enhanced the expression of phosphate starvation-induced (PSI) genes and resulted in the enhancement of Pi acquisition under Pi deficiency stress. This occurred via PHR2 binding to a cis-element named the PHR1 binding sequences. However, the transcription level of PHR2 was not responsive to Pi starvation. So how is activity of transcription factor PHR2 adjusted to adapt diverse Pi status? Here, we identify an SPX family protein, Os-SPX4 (SPX4 hereafter), involving in Pi starvation signaling and acting as a negative regulator of PHR2. SPX4 is shown to be a fast turnover protein. When Pi is sufficient, through its interaction with PHR2, SPX4 inhibits the binding of PHR2 to its cis-element and reduces the targeting of PHR2 to the nucleus. However, when plants grow under Pi deficiency, the degradation of SPX4 is accelerated through the 26S proteasome pathway, thereby releasing PHR2 into the nucleus and activating the expression of PSI genes. Because the level of SPX4 is responsive to Pi concentration and SPX4 interacts with PHR2 and regulates its activity, this suggests that SPX4 senses the internal Pi concentration under diverse Pi conditions and regulates appropriate responses to maintain Pi homeostasis in plants.
机译:PHR2是水稻中磷酸信号传导的中央调节剂,可增强磷饥饿诱导(PSI)基因的表达,并在缺磷胁迫下增强Pi的吸收。这是通过PHR2与名为PHR1结合序列的顺式元件结合而发生的。但是,PHR2的转录水平不响应Pi饥饿。那么如何调节转录因子PHR2的活性以适应不同的Pi状态呢?在这里,我们确定一个SPX家族蛋白Os-SPX4(以下称为SPX4),参与Pi饥饿信号传导并充当PHR2的负调节剂。 SPX4被证明是一种快速更新的蛋白质。当Pi足够时,通过其与PHR2的相互作用,SPX4抑制了PHR2与其顺式元素的结合,并降低了PHR2对细胞核的靶向性。但是,当植物在缺乏Pi的情况下生长时,SPX4的降解会通过26S蛋白酶体途径加速,从而将PHR2释放到细胞核中并激活PSI基因的表达。由于SPX4的水平对Pi的浓度有反应,并且SPX4与PHR2相互作用并调节其活性,因此表明SPX4在不同的Pi条件下感知内部Pi的浓度并调节适当的反应以维持植物体内Pi的稳态。

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