Centre for Discovery Brain Sciences, Hugh Robson Building, George Square, Edinburgh EH8 9XD, UK
Heidelberg Institute for Stem Cell Technology and Experimental Medicine (HI-STEM), 69120 Heidelberg, Germany.
Development. 2020 Jun 26;147(12):dev184523. doi: 10.1242/dev.184523.
Thalamocortical axons (TCAs) cross several tissues on their journey to the cortex. Mechanisms must be in place along the route to ensure they connect with their targets in an orderly fashion. The ventral telencephalon acts as an instructive tissue, but the importance of the diencephalon in TCA mapping is unknown. We report that disruption of diencephalic development by Pax6 deletion results in a thalamocortical projection containing mapping errors. We used conditional mutagenesis to test whether these errors are due to the disruption of pioneer projections from prethalamus to thalamus and found that, although this correlates with abnormal TCA fasciculation, it does not induce topographical errors. To test whether the thalamus contains navigational cues for TCAs, we used slice culture transplants and gene expression studies. We found the thalamic environment is instructive for TCA navigation and that the molecular cues netrin 1 and semaphorin 3a are likely to be involved. Our findings indicate that the correct topographic mapping of TCAs onto the cortex requires the order to be established from the earliest stages of their growth by molecular cues in the thalamus itself.
丘脑皮质轴突(TCAs)在到达皮质的过程中穿过几种组织。在整个过程中,必须有相应的机制来确保它们以有序的方式与目标连接。脑室周围的端脑起着指导组织的作用,但间脑在 TCA 映射中的重要性尚不清楚。我们报告称,Pax6 缺失破坏间脑发育会导致丘脑皮质投射包含映射错误。我们使用条件性诱变来测试这些错误是否是由于前丘脑到丘脑的先驱投射的破坏引起的,发现尽管这与异常的 TCA 聚集有关,但不会引起拓扑错误。为了测试丘脑是否为 TCAs 提供导航线索,我们使用切片培养移植和基因表达研究。我们发现,丘脑环境对 TCA 的导航具有指导作用,神经导向因子 netrin 1 和 semaphorin 3a 可能参与其中。我们的研究结果表明,TCAs 在皮质上的正确拓扑映射需要在其生长的最早阶段通过丘脑本身的分子线索来建立顺序。