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Synthetic 重建的 启动子指定了 Bicoid、Zelda 和 Hunchback 在其转录动力学中的作用。

Synthetic reconstruction of the promoter specifies the role of Bicoid, Zelda and Hunchback in the dynamics of its transcription.

机构信息

Institut Curie, Université PSL, Sorbonne Université, CNRS, Nuclear Dynamics, Paris, France.

Laboratoire de Physique de l'École Normale Supérieure, CNRS, Université PSL, Sorbonne Université and Université de Paris, Paris, France.

出版信息

Elife. 2022 Apr 1;11:e74509. doi: 10.7554/eLife.74509.

Abstract

For over 40 years, the Bicoid- (Bcd-) system in the fruit fly embryo has been used as a model to study how positional information in morphogen concentration gradients is robustly translated into step-like responses. A body of quantitative comparisons between theory and experiment have since questioned the initial paradigm that the sharp transcription pattern emerges solely from diffusive biochemical interactions between the Bicoid transcription factor and the gene promoter region. Several alternative mechanisms have been proposed, such as additional sources of positional information, positive feedback from Hb proteins or out-of-equilibrium transcription activation. By using the MS2-MCP RNA-tagging system and analysing in real time, the transcription dynamics of synthetic reporters for Bicoid and/or its two partners Zelda and Hunchback, we show that all the early expression pattern features and temporal dynamics are compatible with an equilibrium model with a short decay length Bicoid activity gradient as a sole source of positional information. Meanwhile, Bicoid's partners speed-up the process by different means: Zelda lowers the Bicoid concentration threshold required for transcriptional activation while Hunchback reduces burstiness and increases the polymerase firing rate.

摘要

四十多年来,果蝇胚胎中的 Bicoid-(Bcd-)系统一直被用作研究形态发生素浓度梯度中的位置信息如何稳健地转化为阶跃样反应的模型。自那时以来,大量的理论与实验定量比较质疑了最初的范式,即尖锐的 转录模式仅源自 Bicoid 转录因子与基因启动子区域之间的扩散生化相互作用。已经提出了几种替代机制,例如位置信息的其他来源、Hb 蛋白的正反馈或非平衡转录激活。通过使用 MS2-MCP RNA 标记系统并实时分析,我们展示了合成报告基因的转录动力学对于 Bicoid 及其两个伙伴 Zelda 和 Hunchback,所有早期的 表达模式特征和时间动态都与一个具有短衰减长度 Bicoid 活性梯度的平衡模型兼容,该模型是位置信息的唯一来源。同时,Bicoid 的伙伴通过不同的方式加速了这个过程:Zelda 降低了转录激活所需的 Bicoid 浓度阈值,而 Hunchback 降低了爆发性并增加了聚合酶的触发率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e144/8975551/6fd464f51e80/elife-74509-fig1.jpg

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