Shimizu Takeshi, Hibi Masahiko
Laboratory for Vertebrate Axis Formation, RIKEN Center for Developmental Biology, Kobe 650-0047, Japan.
Dev Growth Differ. 2009 Apr;51(3):221-31. doi: 10.1111/j.1440-169X.2009.01088.x. Epub 2009 Feb 16.
The zinc finger genes Fezf1 (Fez) and Fezf2 (Fez-like, Fezl, Zfp312) were initially identified as anterior neuroectoderm-specific genes in Xenopus and zebrafish. They encode transcriptional regulators containing an Engrailed homology 1 (Eh1) repressor motif, which is known to interact with Groucho/TLE (Transducin-Like Enhancer of Split)-type transcriptional co-repressors. Both Fezf1 and Fezf2 are expressed in the prospective forebrain region during early embryogenesis, and they subsequently show both overlapping and distinct expression domains in the olfactory epithelium and forebrain. Loss-of-function studies in mouse and zebrafish revealed roles for Fezf1 and Fezf2 in the development of the olfactory system and forebrain. In mice, Fezf1, expressed in olfactory sensory neurons, is required for the axonal projection of olfactory sensory neurons, and controls the layer formation of the olfactory bulb in a non-cell autonomous manner. Fezf2 is involved in the differentiation of subplate neurons and the formation of the fimbria and fornix. Fezf2 is also essential for specification of the subcerebral projection neurons in the neocortex. Fezf1 and Fezf2 control the rostro-caudal patterning of the diencephalon by repressing the caudal diencephalon fate in the rostral diencephalon in mice and zebrafish. In zebrafish, fezf2 is also required for the development of monoaminergic (dopaminergic and serotonergic) neurons in the basal forebrain.
锌指基因Fezf1(Fez)和Fezf2(类Fez、Fezl、Zfp312)最初是在非洲爪蟾和斑马鱼中作为前神经外胚层特异性基因被鉴定出来的。它们编码含有Engrailed同源性1(Eh1)抑制基序的转录调节因子,已知该基序与Groucho/TLE(分裂样转导蛋白增强子)型转录共抑制因子相互作用。在胚胎早期发育过程中,Fezf1和Fezf2均在前脑区域表达,随后它们在嗅觉上皮和前脑中显示出重叠和不同的表达域。对小鼠和斑马鱼的功能丧失研究揭示了Fezf1和Fezf2在嗅觉系统和前脑发育中的作用。在小鼠中,嗅觉感觉神经元中表达的Fezf1是嗅觉感觉神经元轴突投射所必需的,并以非细胞自主方式控制嗅球的层形成。Fezf2参与板下层神经元的分化以及穹窿和穹窿柱的形成。Fezf2对于新皮质中脑下投射神经元的特化也至关重要。在小鼠和斑马鱼中,Fezf1和Fezf2通过抑制前脑间脑尾侧命运来控制间脑的前后模式形成。在斑马鱼中,基底前脑单胺能(多巴胺能和5-羟色胺能)神经元的发育也需要fezf2。