Kasemeier-Kulesa Jennifer C, Bradley Roger, Pasquale Elena B, Lefcort Frances, Kulesa Paul M
Stowers Institute for Medical Research, Kansas City, MO 64110, USA.
Development. 2006 Dec;133(24):4839-47. doi: 10.1242/dev.02662. Epub 2006 Nov 15.
Previous studies have suggested that the segmental pattern of neural-crest-derived sympathetic ganglia arises as a direct result of signals that restrict neural crest cell migratory streams through rostral somite halves. We recently showed that the spatiotemporal pattern of chick sympathetic ganglia formation is a two-phase process. Neural crest cells migrate laterally to the dorsal aorta, then surprisingly spread out in the longitudinal direction, before sorting into discrete ganglia. Here, we investigate the function of two families of molecules that are thought to regulate cell sorting and aggregation. By blocking Eph/ephrins or N-cadherin function, we measure changes in neural crest cell migratory behaviors that lead to alterations in sympathetic ganglia formation using a recently developed sagittal slice explant culture and 3D confocal time-lapse imaging. Our results demonstrate that local inhibitory interactions within inter-ganglionic regions, mediated by Eph/ephrins, and adhesive cell-cell contacts at ganglia sites, mediated by N-cadherin, coordinate to sculpt discrete sympathetic ganglia.
先前的研究表明,神经嵴衍生的交感神经节的节段模式是信号的直接结果,这些信号通过头侧体节的后半部分限制神经嵴细胞的迁移流。我们最近发现,鸡交感神经节形成的时空模式是一个两阶段过程。神经嵴细胞横向迁移至背主动脉,然后令人惊讶地沿纵向扩散,之后再分选成离散的神经节。在此,我们研究了两个被认为调节细胞分选和聚集的分子家族的功能。通过阻断Eph/ephrin或N-钙黏蛋白的功能,我们利用最近开发的矢状切片外植体培养和三维共聚焦延时成像技术,测量了神经嵴细胞迁移行为的变化,这些变化导致了交感神经节形成的改变。我们的结果表明,由Eph/ephrin介导的神经节间区域内的局部抑制性相互作用,以及由N-钙黏蛋白介导的神经节部位的黏附性细胞间接触,共同作用塑造了离散的交感神经节。