首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Motor axon guidance of the mammalian trochlear and phrenic nerves: dependence on the netrin receptor Unc5c and modifier loci.
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Motor axon guidance of the mammalian trochlear and phrenic nerves: dependence on the netrin receptor Unc5c and modifier loci.

机译:哺乳动物滑车和神经的运动轴突引导:依赖于netrin受体Unc5c和修饰位点。

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摘要

Netrin signaling is important to guide migrating neurons and axons in many systems. Experiments with vertebrate CNS explants suggested netrin is bifunctional, attracting some axons and repelling others. Netrin1-expressing cells attracted spinal commissural axons and repelled trochlear cranial nerve axons in these experiments. Subsequent genetic studies demonstrated that multiple axon types, including those of the spinal commissural neurons, are attracted to netrin in vivo; however, an in vivo role for netrin signaling in trochlear nerve repulsion has not been observed. Here, we demonstrate that mice with a null mutation in the netrin receptor Unc5c on the inbred C57BL/6J (B6) genetic background have ventral/ipsilateral trochlear nerve misprojections. These misprojections are attenuated on a hybrid B6 x SJL background. In addition, B6.Unc5c(-/-) mice die as neonates of apparent respiratory distress and have incomplete phrenic nerve innervation of the diaphragm muscle. Neither the trochlear nerve misprojections nor the phrenic nerve phenotype was observed in B6 embryos lacking the netrin receptors DCC or Neogenin1, or the ligand netrin1, indicating these signaling molecules are dispensable for guidance of these axons. Like the trochlear nerve, the phrenic nerve phenotype is modified in a B6 x SJL hybrid background. To identify these modifier loci, we performed genome scans of the hybrid Unc5c(-/-) mice and found a major SJL-derived suppressor locus on Chromosome 17. Our results provide the first evidence that genes involved in netrin signaling are necessary for proper mammalian spinal motor axon development and trochlear axon guidance. In addition, they demonstrate the importance of modifier genes in vertebrate axonal guidance.
机译:Netrin信号对于在许多系统中指导神经元和轴突迁移很重要。脊椎动物中枢神经系统外植体的实验表明,netrin具有双重功能,可吸引某些轴突并排斥其他轴突。在这些实验中,表达Netrin1的细胞吸引了脊髓合缝轴突并排斥了滑车颅神经轴突。随后的遗传研究表明,体内多种蛋白的轴突,包括脊柱连合神经元的轴突,都被netrin吸引。然而,尚未观察到netrin信号在滑车神经排斥中的体内作用。在这里,我们证明了近交C57BL / 6J(B6)遗传背景上netrin受体Unc5c无效突变的小鼠具有腹侧/同侧滑车神经错投射。这些错误的投影在混合B6 x SJL背景上会减弱。此外,B6.Unc5c(-/-)小鼠死于明显的呼吸窘迫新生儿,并且the肌的神经支配不完全。在缺少netrin受体DCC或Neogenin1或配体netrin1的B6胚胎中,未观察到滑车神经错位和the神经表型,表明这些信号分子可用于指导这些轴突。像滑车神经一样,神经表型在B​​6 x SJL杂交背景中被修饰。为了鉴定这些修饰位点,我们对杂种Unc5c(-/-)小鼠进行了基因组扫描,发现了第17号染色​​体上一个主要的SJL来源的抑制基因座。我们的结果提供了第一个证据,证明与netrin信号有关的基因对于适当的哺乳动物是必需的脊髓运动轴突的发展和滑车轴突的指导。此外,他们证明了修饰基因在脊椎动物轴突引导中的重要性。

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