Pratt Thomas, Quinn Jane C, Simpson T Ian, West John D, Mason John O, Price David J
Biomedical Sciences, University of Edinburgh, Edinburgh EH8 9XD, United Kingdom.
J Neurosci. 2002 Oct 1;22(19):8523-31. doi: 10.1523/JNEUROSCI.22-19-08523.2002.
Early events in the formation of the thalamocortical tract remain poorly understood. Recent work has suggested that thalamocortical axons follow a path pioneered by transient thalamic afferents originating from the medial part of the ventral telencephalon. We studied the development of these transient afferents and the thalamocortical tract in mutant mice lacking transcription factors normally expressed in the dorsal thalamus or ventral telencephalon. Pax6 is expressed in the dorsal thalamus, but not in the medial part of the ventral telencephalon, and the thalamocortical tract fails to form in Pax6(-/-) embryos. We found that transient thalamic afferents from the ventral telencephalon do not form in Pax6(-/-) embryos; this may contribute to the failure of their thalamocortical development. The distribution of Pax6(-/-) cells in Pax6(-/-)<--> Pax6(+/+) chimeras supports conclusions drawn from forebrain marker gene expression that Pax6 is not required for the normal development of the medial part of the ventral telencephalon but is required in the dorsal thalamus. Failure of the transient afferent pathway to develop is therefore likely a cell nonautonomous defect reflecting primary defects in the thalamus. We then examined the formation of thalamic afferents and efferents in Foxg1(-/-) embryos, which lack recognizable ventral telencephalic structures. In these embryos thalamic efferents navigate correctly through the thalamus but fail to turn laterally into the telencephalon, whereas other axons are able to cross the diencephalic/telencephalic boundary. Our results support a role for the ventral telencephalon in guiding the early development of the thalamocortical tract and identify a new role for the transcription factor Pax6 in regulating the ability of the thalamus to attract ventral telencephalic afferents.
丘脑皮质束形成的早期事件仍知之甚少。最近的研究表明,丘脑皮质轴突沿着一条由源自腹侧端脑内侧部分的短暂丘脑传入纤维开辟的路径生长。我们研究了这些短暂传入纤维和丘脑皮质束在缺乏通常在背侧丘脑或腹侧端脑表达的转录因子的突变小鼠中的发育情况。Pax6在背侧丘脑中表达,但不在腹侧端脑的内侧部分表达,并且在Pax6(-/-)胚胎中丘脑皮质束无法形成。我们发现,来自腹侧端脑的短暂丘脑传入纤维在Pax6(-/-)胚胎中无法形成;这可能导致它们丘脑皮质发育的失败。Pax6(-/-)<-->Pax6(+/+)嵌合体中Pax6(-/-)细胞的分布支持了从前脑标记基因表达得出的结论,即Pax6对于腹侧端脑内侧部分的正常发育不是必需的,但在背侧丘脑中是必需的。因此,短暂传入通路发育失败可能是一种细胞非自主性缺陷,反映了丘脑中的原发性缺陷。然后我们检查了Foxg1(-/-)胚胎中丘脑传入纤维和传出纤维的形成,这些胚胎缺乏可识别的腹侧端脑结构。在这些胚胎中,丘脑传出纤维能够正确地穿过丘脑,但无法侧向转向端脑,而其他轴突能够穿过间脑/端脑边界。我们的结果支持腹侧端脑在引导丘脑皮质束早期发育中的作用,并确定了转录因子Pax6在调节丘脑吸引腹侧端脑传入纤维能力方面的新作用。