Jevince Angela R, Kadison Stephanie R, Pittman Andrew J, Chien Chi-Bin, Kaprielian Zaven
Department of Pathology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
J Comp Neurol. 2006 Aug 10;497(5):734-50. doi: 10.1002/cne.21001.
Contact-dependent interactions between EphB receptors and ephrin-B ligands mediate a variety of cell-cell communication events in the developing and mature central nervous system (CNS). These predominantly repulsive interactions occur at the interface between what are considered to be mutually exclusive EphB and ephrin-B expression domains. We previously used receptor and ligand affinity probes to show that ephrin-B ligands are expressed in the floor plate and within a dorsal region of the embryonic mouse spinal cord, while EphB receptors are present on decussated segments of commissural axons that navigate between these ephrin-B domains. Here we present the generation and characterization of two new monoclonal antibodies, mAb EfB1-3, which recognizes EphB1, EphB2, and EphB3, and mAb efrnB1, which is specific for ephrin-B1. We use these reagents and polyclonal antibodies specific for EphB1, EphB2, EphB3, or ephrin-B1 to describe the spatiotemporal expression patterns of EphB receptors and ephrin-B1 in the vertebrate spinal cord. Consistent with affinity probe binding, we show that EphB1, EphB2, and EphB3 are each preferentially expressed on decussated segments of commissural axons in vivo and in vitro, and that ephrin-B1 is expressed in a dorsal domain of the spinal cord that includes the roof plate. In contrast to affinity probe binding profiles, we show here that EphB1, EphB2, and EphB3 are present on the ventral commissure, and that EphB1 and EphB3 are expressed on axons that compose the dorsal funiculus. In addition, we unexpectedly find that mesenchymal cells, which surround the spinal cord and dorsal root ganglion, express ephrin-B1.
EphB受体与ephrin-B配体之间的接触依赖性相互作用介导了发育中和成熟的中枢神经系统(CNS)中的多种细胞间通讯事件。这些主要为排斥性的相互作用发生在被认为是相互排斥的EphB和ephrin-B表达域之间的界面处。我们之前使用受体和配体亲和探针表明,ephrin-B配体在胚胎小鼠脊髓的底板和背侧区域表达,而EphB受体存在于在这些ephrin-B域之间导航的连合轴突的交叉节段上。在这里,我们展示了两种新的单克隆抗体mAb EfB1-3和mAb efrnB1的产生和特性,mAb EfB1-3识别EphB1、EphB2和EphB3,mAb efrnB1对ephrin-B1具有特异性。我们使用这些试剂以及针对EphB1、EphB2、EphB3或ephrin-B1的多克隆抗体来描述脊椎动物脊髓中EphB受体和ephrin-B1的时空表达模式。与亲和探针结合一致,我们表明EphB1、EphB2和EphB3在体内和体外均优先在连合轴突的交叉节段上表达,并且ephrin-B1在包括顶板的脊髓背侧域中表达。与亲和探针结合谱相反,我们在此表明EphB1、EphB2和EphB3存在于腹侧连合处,并且EphB1和EphB3在构成背侧索的轴突上表达。此外,我们意外地发现包围脊髓和背根神经节的间充质细胞表达ephrin-B1。