Weis Center for Research, Geisinger Clinic, 100 North Academy Avenue, Danville, PA 17822-2613, USA.
Matrix Biol. 2010 Jun;29(5):357-68. doi: 10.1016/j.matbio.2010.02.006. Epub 2010 Feb 25.
The extracellular matrix of peripheral nerve is formed from a diverse set of macromolecules, including glycoproteins, collagens and proteoglycans. Recent studies using knockout animal models have demonstrated that individual components of the extracellular matrix play a vital role in peripheral nerve development and regeneration. In this study we identified fibrillin-1 and fibrillin-2, large modular structural glycoproteins, as components of the extracellular matrix of peripheral nerve. Previously it was found that fibrillin-2 null mice display joint contractures, suggesting a possible defect of the peripheral nervous system in these animals. Close examination of the peripheral nerves of fibrillin-2 deficient animals described here revealed some structural abnormalities in the perineurium, while general structure of the nerve and molecular composition of nerve extracellular matrix remained unchanged. We also found that in spite of the obvious motor function impairment, fibrillin-2 null mice failed to display changes of nerve conduction properties or nerve regeneration capacity. Based on the data obtained we can conclude that peripheral neuropathy should be excluded as the cause of the impairment of locomotory function and joint contractures observed in fibrillin-2 deficient animals.
周围神经的细胞外基质是由多种大分子组成的,包括糖蛋白、胶原蛋白和蛋白聚糖。最近使用基因敲除动物模型的研究表明,细胞外基质的各个成分在外周神经发育和再生中起着至关重要的作用。在这项研究中,我们鉴定出原纤维蛋白-1 和原纤维蛋白-2 作为周围神经细胞外基质的成分,它们是大型模块化结构糖蛋白。以前发现原纤维蛋白-2 基因敲除小鼠显示出关节挛缩,表明这些动物的周围神经系统可能存在缺陷。对这里描述的原纤维蛋白-2 缺乏动物的周围神经进行仔细检查发现,神经外膜存在一些结构异常,而神经的一般结构和神经细胞外基质的分子组成保持不变。我们还发现,尽管明显存在运动功能障碍,但原纤维蛋白-2 基因敲除小鼠并没有表现出神经传导特性或神经再生能力的变化。根据获得的数据,我们可以得出结论,周围神经病变不应该是原纤维蛋白-2 基因敲除动物运动功能障碍和关节挛缩的原因。