Pozzoli O, Bosetti A, Croci L, Consalez G G, Vetter M L
Department of Neuroscience, San Raffaele Scientific Institute (HSR), Milan, Italy.
Dev Biol. 2001 May 15;233(2):495-512. doi: 10.1006/dbio.2001.0230.
During primary neurogenesis in Xenopus, a cascade of helix--loop--helix (HLH) transcription factors regulates neuronal determination and differentiation. While XNeuroD functions at a late step in this cascade to regulate neuronal differentiation, the factors that carry out terminal differentiation are still unknown. We have isolated a new Xenopus member of the Ebf/Olf-1 family of HLH transcription factors, Xebf3, and provide evidence that, during primary neurogenesis, it regulates neuronal differentiation downstream of XNeuroD. In developing Xenopus embryos, Xebf3 is turned on in the three stripes of primary neurons at stage 15.5, after XNeuroD. In vitro, XEBF3 binds the EBF/OLF-1 binding site and functions as a transcriptional activator. When overexpressed, Xebf3 is able to induce ectopic neurons at neural plate stages and directly convert ectodermal cells into neurons in animal cap explants. Expression of Xebf3 can be activated by XNeuroD both in whole embryos and in animal caps, indicating that this new HLH factor might be regulated by XNeuroD. Furthermore, in animal caps, XNeuroD can activate Xebf3 in the absence of protein synthesis, suggesting that, in vitro, this regulation is direct. Similar to XNeuroD, but unlike Xebf2/Xcoe2, Xebf3 expression and function are insensitive to Delta/Notch-mediated lateral inhibition. In summary, we conclude that Xebf3 functions downstream of XNeuroD and is a regulator of neuronal differentiation in Xenopus.
在非洲爪蟾的初级神经发生过程中,一系列螺旋-环-螺旋(HLH)转录因子调节神经元的决定和分化。虽然XNeuroD在这一调控级联反应的后期发挥作用来调节神经元分化,但执行终末分化的因子仍不清楚。我们分离出了HLH转录因子Ebf/Olf-1家族的一个新的非洲爪蟾成员Xebf3,并提供证据表明,在初级神经发生过程中,它在XNeuroD的下游调节神经元分化。在发育中的非洲爪蟾胚胎中,Xebf3在第15.5期于初级神经元的三条带中开启,在XNeuroD之后。在体外,XEBF3结合EBF/OLF-1结合位点并作为转录激活因子发挥作用。当过量表达时,Xebf3能够在神经板阶段诱导异位神经元,并在动物帽外植体中将外胚层细胞直接转化为神经元。Xebf3的表达在整个胚胎和动物帽中都能被XNeuroD激活,这表明这个新的HLH因子可能受XNeuroD调控。此外,在动物帽中,XNeuroD在没有蛋白质合成的情况下就能激活Xebf3,这表明在体外这种调控是直接的。与XNeuroD相似,但与Xebf2/Xcoe2不同,Xebf3的表达和功能对Delta/Notch介导的侧向抑制不敏感。总之,我们得出结论,Xebf3在XNeuroD的下游发挥作用,是非洲爪蟾神经元分化的一个调节因子。