Zhang Samuel Shao-min, Fu Xin-Yuan, Barnstable Colin J
Department of Pathology, Yale University School of Medicine, New Haven, CT 06520, USA.
Mol Neurobiol. 2002 Oct-Dec;26(2-3):137-52. doi: 10.1385/MN:26:2-3:137.
The formation of retina from neural plate has been mapped extensively by anatomical and molecular methods. The major cascades of transcription factor expression have been identified, and deficits resulting from transcription factor knockouts are well characterized. There is extensive cross-regulation, both positive and negative, at the transcriptional level between transcription factors and this is vital in the formation of neural compartments. Many transcription factors are important at both early stages of optic cup formation and later stages of terminal differentiation of retinal cell types. The transcription factor cascades can be regulated by extrinsic factors, and some of the intracellular signaling pathways whereby this is achieved have been identified. Defining the quantitative interactions between regulatory molecules will be the next step in understanding this excellent model of vertebrate central nervous system (CNS) development.
通过解剖学和分子方法,已经广泛绘制了神经板形成视网膜的过程。已经确定了转录因子表达的主要级联反应,并且转录因子敲除导致的缺陷也得到了很好的表征。转录因子之间在转录水平上存在广泛的正负交叉调节,这在神经节段的形成中至关重要。许多转录因子在视杯形成的早期阶段和视网膜细胞类型终末分化的后期阶段都很重要。转录因子级联反应可以由外在因素调节,并且已经确定了一些实现这一过程的细胞内信号通路。确定调节分子之间的定量相互作用将是理解这个脊椎动物中枢神经系统(CNS)发育优秀模型的下一步。