Cebrià Francesc, Newmark Phillip A
Department of Cell and Developmental Biology and Neuroscience Program, University of Illinois at Urbana-Champaign, B107 Chemical and Life Sciences Laboratory, 601 South Goodwin Avenue, Urbana, IL 61801, USA.
Development. 2005 Aug;132(16):3691-703. doi: 10.1242/dev.01941. Epub 2005 Jul 20.
Conserved axon guidance mechanisms are essential for proper wiring of the nervous system during embryogenesis; however, the functions of these cues in adults and during regeneration remain poorly understood. Because freshwater planarians can regenerate a functional central nervous system (CNS) from almost any portion of their body, they are useful models in which to study the roles of guidance cues during neural regeneration. Here, we characterize two netrin homologs and one netrin receptor family member from Schmidtea mediterranea. RNAi analyses indicate that Smed-netR (netrin receptor) and Smed-netrin2 are required for proper CNS regeneration and that Smed-netR may mediate the response to Smed-netrin2. Remarkably, Smed-netR and Smed-netrin2 are also required in intact planarians to maintain the proper patterning of the CNS. These results suggest a crucial role for guidance cues, not only in CNS regeneration but also in maintenance of neural architecture.
保守的轴突导向机制对于胚胎发育过程中神经系统的正确布线至关重要;然而,这些信号在成体和再生过程中的功能仍知之甚少。由于淡水涡虫几乎可以从身体的任何部位再生出功能性中枢神经系统(CNS),它们是研究神经再生过程中导向信号作用的有用模型。在这里,我们鉴定了来自地中海涡虫的两个netrin同源物和一个netrin受体家族成员。RNA干扰分析表明,Smed-netR(netrin受体)和Smed-netrin2是中枢神经系统正常再生所必需的,并且Smed-netR可能介导对Smed-netrin2的反应。值得注意的是,完整涡虫中也需要Smed-netR和Smed-netrin2来维持中枢神经系统的正确模式。这些结果表明导向信号不仅在中枢神经系统再生中,而且在神经结构的维持中都起着关键作用。