Matuzelski Elise, Bunt Jens, Harkins Danyon, Lim Jonathan W C, Gronostajski Richard M, Richards Linda J, Harris Lachlan, Piper Michael
School of Biomedical Sciences, The Faculty of Medicine, The University of Queensland, Brisbane 4072, Queensland, Australia.
Queensland Brain Institute, The University of Queensland, Brisbane 4072, Queensland, Australia.
Dev Biol. 2017 Dec 15;432(2):286-297. doi: 10.1016/j.ydbio.2017.10.019. Epub 2017 Oct 26.
During mouse spinal cord development, ventricular zone progenitor cells transition from producing neurons to producing glia at approximately embryonic day 11.5, a process known as the gliogenic switch. The transcription factors Nuclear Factor I (NFI) A and B initiate this developmental transition, but the contribution of a third NFI member, NFIX, remains unknown. Here, we reveal that ventricular zone progenitor cells within the spinal cord express NFIX after the onset of NFIA and NFIB expression, and after the gliogenic switch has occurred. Mice lacking NFIX exhibit normal neurogenesis within the spinal cord, and, while early astrocytic differentiation proceeds normally, aspects of terminal astrocytic differentiation are impaired. Finally, we report that, in the absence of Nfia or Nfib, there is a marked reduction in the spinal cord expression of NFIX, and that NFIB can transcriptionally activate Nfix expression in vitro. These data demonstrate that NFIX is part of the downstream transcriptional program through which NFIA and NFIB coordinate gliogenesis within the spinal cord. This hierarchical organisation of NFI protein expression and function during spinal cord gliogenesis reveals a previously unrecognised auto-regulatory mechanism within this gene family.
在小鼠脊髓发育过程中,脑室区祖细胞在大约胚胎第11.5天从产生神经元转变为产生神经胶质细胞,这一过程称为胶质细胞生成转换。转录因子核因子I(NFI)A和B启动了这一发育转变,但第三个NFI成员NFIX的作用仍不清楚。在这里,我们发现脊髓内的脑室区祖细胞在NFIA和NFIB表达开始后以及胶质细胞生成转换发生后表达NFIX。缺乏NFIX的小鼠脊髓内神经发生正常,虽然早期星形胶质细胞分化正常进行,但终末星形胶质细胞分化的某些方面受损。最后,我们报告,在没有Nfia或Nfib的情况下,脊髓中NFIX的表达显著降低,并且NFIB可以在体外转录激活Nfix的表达。这些数据表明,NFIX是NFIA和NFIB在脊髓内协调胶质细胞生成的下游转录程序的一部分。脊髓胶质细胞生成过程中NFI蛋白表达和功能的这种层次组织揭示了该基因家族中一种以前未被认识的自调节机制。