Brown David D R, Molinaro Alyssa M, Pearson Bret J
Hospital for Sick Children, Program in Developmental and Stem Cell Biology, Toronto, ON, Canada M5G0A4; Department of Molecular Genetics, University of Toronto, Toronto, ON, Canada M5G0A4.
Hospital for Sick Children, Program in Developmental and Stem Cell Biology, Toronto, ON, Canada M5G0A4; Department of Molecular Genetics, University of Toronto, Toronto, ON, Canada M5G0A4; Ontario Institute for Cancer Research, Toronto, ON, Canada M5G0A4.
Dev Biol. 2018 Jan 15;433(2):374-383. doi: 10.1016/j.ydbio.2017.08.024. Epub 2017 Dec 25.
The adult brain of the planarian Schmidtea mediterranea (a freshwater flatworm) is a dynamic structure with constant cell turnover as well as the ability to completely regenerate de novo. Despite this, function and pattern is achieved in a reproducible manner from individual to individual in terms of the correct spatial and temporal production of specific neuronal subtypes. Although several signaling molecules have been found to be key to scaling and cell turnover, the mechanisms by which specific neural subtypes are specified remain largely unknown. Here we performed a 6 day RNAseq time course on planarians that were regenerating either 0, 1, or 2 heads in order to identify novel regulators of brain regeneration. Focusing on transcription factors, we identified a TCF/LEF factor, Smed-tcf1, which was required to correctly pattern the dorsal-lateral cell types of the regenerating brain. The most severely affected neurons in Smed-tcf1(RNAi) animals were the dorsal GABAergic neurons, which failed to regenerate, leading to an inability of the animals to phototaxis away from light. Together, Smed-tcf1 is a critical regulator, required to pattern the dorsal-lateral region of the regenerating planarian brain.
地中海涡虫(一种淡水扁虫)的成体大脑是一个动态结构,具有持续的细胞更新以及从头完全再生的能力。尽管如此,在特定神经元亚型的正确时空产生方面,个体之间仍以可重复的方式实现功能和模式。虽然已发现几种信号分子是规模缩放和细胞更新的关键,但特定神经亚型的指定机制在很大程度上仍不清楚。在这里,我们对再生0个、1个或2个头的涡虫进行了为期6天的RNA测序时间进程分析,以鉴定大脑再生的新型调节因子。聚焦于转录因子,我们鉴定出一个TCF/LEF因子,即Smed-tcf1,它是正确构建再生大脑背外侧细胞类型所必需的。Smed-tcf1(RNA干扰)动物中受影响最严重的神经元是背侧GABA能神经元,它们无法再生,导致动物无法进行趋光性避光反应。总之,Smed-tcf1是构建再生涡虫大脑背外侧区域所必需的关键调节因子。