Cellular and Developmental Biology Department, Stazione Zoologica Anton Dohrn, Villa Comunale, 80121 Napoli, Italy.
Dev Biol. 2011 Jul 15;355(2):358-71. doi: 10.1016/j.ydbio.2011.05.584. Epub 2011 May 12.
Retinal homeobox (Rx) genes play a crucial and conserved role in the development of the anterior neural plate of metazoans. During chordate evolution, they have also acquired a novel function in the control of eye formation and neurogenesis. To characterize the Rx genetic cascade and shed light on the mechanisms that led to the acquisition of this new role in eye development, we studied Rx transcriptional regulation using the ascidian, Ciona intestinalis. Through deletion analysis of the Ci-Rx promoter, we have identified two distinct enhancer elements able to induce Ci-Rx specific expression in the anterior part of the CNS and in the photosensory organ at tailbud and larva stages. Bioinformatic analysis highlighted the presence of two Onecut binding sites contained in these enhancers, so we explored the role of this transcription factor in the regulation of Ci-Rx. By in situ hybridization, we first confirmed that these genes are co-expressed in the same cells. Through a series of in vivo and in vitro experiments, we then demonstrated that the two Onecut sites are responsible for enhancer activation in Ci-Rx endogenous territories. We also demonstrated in vivo that Onecut misexpression is able to induce ectopic activation of the Rx promoter. Finally, we demonstrated that Ci-Onecut is able to promote Ci-Rx expression in the sensory vesicle. Together, these results support the conclusion that in Ciona embryogenesis, Ci-Rx expression is under the control of the Onecut transcription factor and that this factor is necessary and sufficient to specifically activate Ci-Rx through two enhancer elements.
视网膜同源盒(Rx)基因在后生动物前神经板的发育中发挥着关键且保守的作用。在脊索动物进化过程中,它们在控制眼睛形成和神经发生方面也获得了新的功能。为了描述 Rx 基因的遗传级联,并阐明导致其在眼睛发育中获得新功能的机制,我们使用海鞘(Ciona intestinalis)研究了 Rx 的转录调控。通过 Ci-Rx 启动子的缺失分析,我们鉴定了两个不同的增强子元件,它们能够在 CNS 的前部和尾芽和幼虫阶段的感光器官中诱导 Ci-Rx 的特异性表达。生物信息学分析突出了这些增强子中存在的两个 Onecut 结合位点,因此我们探索了该转录因子在 Ci-Rx 调控中的作用。通过原位杂交,我们首先证实这些基因在同一细胞中共表达。通过一系列体内和体外实验,我们随后证明了这两个 Onecut 位点负责 Ci-Rx 内源性区域增强子的激活。我们还在体内证明了 Onecut 的异位表达能够诱导 Rx 启动子的异位激活。最后,我们证明了 Ci-Onecut 能够在感觉囊泡中促进 Ci-Rx 的表达。综上所述,这些结果支持了这样的结论,即在海鞘胚胎发生过程中,Ci-Rx 的表达受 Onecut 转录因子的控制,该因子通过两个增强子元件是激活 Ci-Rx 的必要和充分条件。