Hertel Nicole, Nuernberger Monique, Redies Christoph
Institute of Anatomy I, University of Jena School of Medicine, D-07740 Jena, Germany.
J Comp Neurol. 2008 Jun 1;508(4):511-28. doi: 10.1002/cne.21696.
The expression of 12 different classic cadherins and delta-protocadherins was mapped in consecutive series of sections through the basal ganglia of the postnatal and adult mouse by in situ hybridization. A particular focus was the caudoputamen, which consists of patches (striosomes) and a surrounding matrix that is histologically uniform. The different areas within the caudoputamen are connected specifically to other parts of the basal ganglia and to other brain regions, for example, the substantia nigra. The molecules regulating the morphogenesis and functional connectivity of the basal ganglia are largely unknown. Previous studies suggested that cadherins, a large family of adhesion molecules, are involved in basal ganglia development. In the present work, we study the expression of 12 cadherins and show that the patch and matrix compartments of the caudoputamen express the cadherins differentially, although partial overlap is observed. Moreover, the cadherins are expressed in multiple and diverse gradients within the caudoputamen and other parts of the basal ganglia. The persistence of the expression patterns in the adult basal ganglia suggests the possibility that cadherins also play a role at adult stages. Our results suggest that cadherins provide a code of potentially adhesive cues that specify not only patch and matrix compartments but also multiple molecular gradients within the basal ganglia. This code may relate to patterns of connectivity.
通过原位杂交技术,在出生后及成年小鼠基底神经节的连续切片中,绘制了12种不同经典钙黏蛋白和δ-原钙黏蛋白的表达图谱。特别关注的是尾壳核,它由斑块(纹状体)和周围组织学上均匀的基质组成。尾壳核内的不同区域与基底神经节的其他部分以及其他脑区,如黑质,有特定的连接。调节基底神经节形态发生和功能连接的分子在很大程度上尚不清楚。先前的研究表明,钙黏蛋白作为一大类黏附分子,参与基底神经节的发育。在本研究中,我们研究了12种钙黏蛋白的表达,结果显示尾壳核的斑块和基质区室对钙黏蛋白的表达存在差异,尽管有部分重叠。此外,钙黏蛋白在尾壳核及基底神经节其他部分以多种不同的梯度表达。成年基底神经节中表达模式的持续存在表明钙黏蛋白在成年阶段也可能发挥作用。我们的结果表明,钙黏蛋白提供了一种潜在的黏附线索编码,不仅可以区分斑块和基质区室,还能区分基底神经节内的多种分子梯度。这种编码可能与连接模式有关。