Miles Amanda, Tropepe Vincent
Department of Cell & Systems Biology, University of Toronto , Toronto, Ontario, Canada.
Department of Cell & Systems Biology, University of Toronto, Toronto, Ontario, Canada; Department of Ophthalmology & Vision Sciences; Centre for the Analysis of Genome Evolution and Function, University of Toronto, Toronto, Ontario, Canada.
Neurogenesis (Austin). 2016 Apr 11;3(1):e1161697. doi: 10.1080/23262133.2016.1161697. eCollection 2016.
The proper development of the vertebrate retina relies heavily on producing the correct number and type of differentiated retinal cell types. To achieve this, proliferating retinal progenitor cells (RPCs) must exit the cell cycle at an appropriate time and correctly express a subset of differentiation markers that help specify retinal cell fate. Homeobox genes, which encode a family of transcription factors, have been accredited to both these processes, implicated in the transcriptional regulation of important cell cycle components, such as cyclins and cyclin-dependent kinases, and proneural genes. This dual regulation of homeobox genes allows these factors to help co-ordinate the transition from the proliferating RPC to postmitotic, differentiated cell. However, understanding the exact molecular targets of these factors remains a challenging task. This commentary highlights the current knowledge we have about how these factors regulate cell cycle progression and differentiation, with particular emphasis on a recent discovery from our lab demonstrating an antagonistic relationship between Vsx2 and Dmbx1 to control RPC proliferation. Future studies should aim to further understand the direct transcriptional targets of these genes, additional co-factors/interacting proteins and the possible recruitment of epigenetic machinery by these homeobox genes.
脊椎动物视网膜的正常发育在很大程度上依赖于产生正确数量和类型的分化视网膜细胞。为实现这一点,增殖的视网膜祖细胞(RPCs)必须在适当的时间退出细胞周期,并正确表达有助于确定视网膜细胞命运的一部分分化标志物。同源框基因编码一类转录因子,已被认为与这两个过程有关,既涉及重要细胞周期成分(如细胞周期蛋白和细胞周期蛋白依赖性激酶)的转录调控,也涉及神经前体基因。同源框基因的这种双重调控使这些因子有助于协调从增殖的RPC向有丝分裂后分化细胞的转变。然而,了解这些因子的确切分子靶点仍然是一项具有挑战性的任务。本评论强调了我们目前对这些因子如何调节细胞周期进程和分化的认识,特别强调了我们实验室最近的一项发现,即Vsx2和Dmbx1之间存在拮抗关系以控制RPC增殖。未来的研究应旨在进一步了解这些基因的直接转录靶点、其他辅助因子/相互作用蛋白以及这些同源框基因可能招募的表观遗传机制。