Department of Cell Biology, Max Planck Institute for Developmental Biology, Spemannstraße 35, D-72076 Tübingen, Germany.
Nat Cell Biol. 2011 May;13(5):611-5. doi: 10.1038/ncb2212. Epub 2011 Apr 10.
Cell specification in development requires robust gene-regulatory responses to transient signals. In plants, the small signalling molecule auxin has been implicated in diverse developmental processes. Auxin promotes the degradation of AUXIN/INDOLE-3-ACETIC ACID (AUX/IAA) inhibitors that prevent AUXIN RESPONSE FACTOR (ARF) transcription factors from regulating their target genes. However, the precise role of auxin in patterning has remained unclear, the view of auxin acting as a morphogen is controversial and the transcriptional control of the ARF genes themselves is barely explored. Here, we demonstrate by experimental and computational analyses that the Arabidopsis ARF protein MONOPTEROS (MP) controls its own expression and the expression of its AUX/IAA inhibitor BODENLOS (BDL), with auxin acting as a threshold-specific trigger by promoting the degradation of the inhibitor. Our results suggest a general mechanism for how the transient accumulation of auxin activates self-sustaining or hysteretic feedback systems of interacting auxin-response proteins that, similarly to other genetic switches, result in unequivocal developmental responses.
在发育过程中,细胞特化需要对短暂信号进行稳健的基因调控反应。在植物中,小分子信号分子生长素被牵涉到多种发育过程中。生长素促进生长素/吲哚-3-乙酸(Aux/IAA)抑制剂的降解,从而阻止Auxin 响应因子(ARF)转录因子调控其靶基因。然而,生长素在模式形成中的精确作用仍然不清楚,生长素作为形态发生素的观点存在争议,ARF 基因本身的转录控制几乎没有被探索过。在这里,我们通过实验和计算分析证明,拟南芥 ARF 蛋白 MONOPTEROS (MP) 控制自身表达及其 Aux/IAA 抑制剂 BODENLOS (BDL) 的表达,生长素通过促进抑制剂的降解作为一个阈值特异性触发因素起作用。我们的结果表明,生长素的短暂积累如何激活相互作用的生长素响应蛋白的自我维持或滞后反馈系统的一般机制,类似于其他遗传开关,导致明确的发育反应。