Division of Biology, University of California, San Diego, CA 92093, USA.
Mol Cell Neurosci. 2010 Dec;45(4):430-8. doi: 10.1016/j.mcn.2010.08.002. Epub 2010 Aug 12.
LAR-like receptor protein tyrosine phosphatases (RPTPs), which are abundantly expressed in the nervous systems of most if not all bilaterian animals thus far examined, have been implicated in regulating a variety of critical neuronal processes. These include neuronal pathfinding, adhesion and synaptogenesis during development and, in adult mammals, neuronal regeneration. Here we explored a possible role of a LAR-like RPTP (HmLAR1) in response to mechanical trauma in the adult nervous system of the medicinal leech. In situ hybridization and QPCR analyses of HmLAR1 expression in individual segmental ganglia revealed a significant up-regulation in receptor expression following CNS injury, both in situ and following a period in vitro. Furthermore, we observed up-regulation in the expression of the leech homologue of the Abelson tyrosine kinase, a putative signaling partner to LAR receptors, but not among other tyrosine kinases. The effects on neuronal regeneration were assayed by comparing growth across a nerve crush by projections of individual dorsal P neurons (P(D)) following single-cell injection of interfering RNAs against the receptor or control RNAs. Receptor RNAi led to a significant reduction in HmLAR1 expression by the injected cells and resulted in a significant decrease in sprouting and regenerative growth at the crush site relative to controls. These studies extend the role of the HmLARs from leech neuronal development to adult neuronal regeneration and provide a platform to investigate neuronal regeneration and gene regulation at the single cell level.
LAR 样受体蛋白酪氨酸磷酸酶(RPTPs)在迄今为止检查的大多数(如果不是全部)两侧对称动物的神经系统中大量表达,它们被认为参与调节多种关键的神经元过程。这些过程包括神经元的寻径、发育过程中的粘附和突触形成,以及在成年哺乳动物中,神经元的再生。在这里,我们探讨了 LAR 样 RPTP(HmLAR1)在医用水蛭成年神经系统对机械创伤的反应中的可能作用。在单个节段性神经节中对 HmLAR1 表达的原位杂交和 QPCR 分析显示,在中枢神经系统损伤后,无论是在原位还是在体外一段时间后,受体表达都显著上调。此外,我们观察到,与其他酪氨酸激酶相比,LAR 受体的假定信号伙伴 Abelson 酪氨酸激酶的同源物的表达上调。通过比较单个背 P 神经元(P(D)) 投射在神经挤压后的生长情况来测定对神经元再生的影响,方法是在单个细胞注射针对受体或对照 RNA 的干扰 RNA。受体 RNAi 导致注射细胞中 HmLAR1 的表达显著减少,与对照相比,在挤压部位的发芽和再生生长显著减少。这些研究将 HmLARs 的作用从水蛭神经元发育扩展到成年神经元再生,并提供了一个平台来研究单细胞水平的神经元再生和基因调控。