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HD-ZIP III activity is modulated by competitive inhibitors via a feedback loop in Arabidopsis shoot apical meristem development

机译:HD-ZIP III的活性是由竞争性抑制剂通过拟南芥茎尖分生组织发育中的反馈回路调节的

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Shoot apical meristem (SAM) development is coordinately regulated by two interdependent signaling events: one maintaining stem cell identity and the other governing the initiation of lateral organs from the flanks of the SAM. The signaling networks involved in this process are interconnected and are regulated by multiple molecular mechanisms. Class III homeodomain-leucine zipper (HD-ZIP III) proteins are the most extensively studied transcription factors involved in this regulation. However, how different signals are integrated to maintain stem cell identity and to pattern lateral organ polarity remains unclear. Here, we demonstrated that a small ZIP protein, ZPR3, and its functionally redundant homolog, ZPR4, negatively regulate the HD-ZIP III activity in SAM development. ZPR3 directly interacts with PHABULOSA (PHB) and other HD-ZIP III proteins via the ZIP motifs and forms nonfunctional heterodimers. Accordingly, a double mutant, zpr3-2 zpr4-2, exhibits an altered SAM activity with abnormal stem cell maintenance. However, the mutant displays normal patterning of leaf polarity. In addition, we show that PHB positively regulates ZPR3 expression. We therefore propose that HD-ZIP III activity in regulating SAM development is modulated by, among other things, a feedback loop involving the competitive inhibitors ZPR3 and ZPR4.
机译:茎尖分生组织(SAM)的发育受到两个相互依赖的信号传递事件的协调调节:一个保持干细胞的身份,另一个控制着SAM侧翼器官的启动。此过程中涉及的信号网络是相互连接的,并受多种分子机制调控。 III类同源域-亮氨酸拉链(HD-ZIP III)蛋白是涉及此调控的最广泛研究的转录因子。然而,如何整合不同的信号以维持干细胞的身份并形成侧向器官极性的模式仍不清楚。在这里,我们证明了一个小的ZIP蛋白ZPR3及其功能冗余的同系物ZPR4在SAM开发中负面调节了HD-ZIP III的活性。 ZPR3通过ZIP图案与PHABULOSA(PHB)和其他HD-ZIP III蛋白直接相互作用,并形成无功能的异二聚体。因此,双重突变体zpr3-2 zpr4-2表现出改变的SAM活性以及异常的干细胞维持。但是,该突变体显示出叶片极性的正常模式。此外,我们显示PHB积极调节ZPR3表达。因此,我们提出,通过除其他外,涉及竞争性抑制剂ZPR3和ZPR4的反馈回路来调节HD-ZIP III在调节SAM发育中的活性。

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