Salminen M, Meyer B I, Bober E, Gruss P
Department of Molecular Cell Biology, Max Planck Institute of Biophysical Chemistry, Göttingen, Germany.
Development. 2000 Jan;127(1):13-22. doi: 10.1242/dev.127.1.13.
The morphogenetic development of the mammalian inner ear is a complex multistep process, the molecular and cellular details of which are only beginning to be unraveled. We show here that mouse netrin 1, known to be involved in axon guidance and cell migration in the central nervous system, also plays a critical morphogenetic role during semicircular canal formation. netrin 1 is expressed at high levels in the otic epithelium, in cells that will come together to form a fusion plate, a prerequisite for the formation of semicircular canals. In netrin 1 mutant mice, fusion plate formation is severely affected resulting in a reduced anterior semicircular canal and the complete lack of the posterior and lateral canals. Our results suggest that netrin 1 facilitates semicircular canal formation through two different mechanisms: (1) it participates in the detachment of the fusion plate epithelia from the basement membrane, and (2) it stimulates proliferation of the periotic mesenchymal cells which then push the epithelial cell walls together to form the fusion plate.
哺乳动物内耳的形态发生发育是一个复杂的多步骤过程,其分子和细胞细节才刚刚开始被揭示。我们在此表明,已知参与中枢神经系统轴突导向和细胞迁移的小鼠netrin 1,在半规管形成过程中也发挥着关键的形态发生作用。netrin 1在耳上皮中高水平表达,这些细胞会聚集在一起形成融合板,而融合板是半规管形成的前提条件。在netrin 1突变小鼠中,融合板的形成受到严重影响,导致前半规管变小,而后半规管和外侧半规管完全缺失。我们的结果表明,netrin 1通过两种不同机制促进半规管形成:(1)它参与融合板上皮与基底膜的分离;(2)它刺激耳周间充质细胞增殖,然后这些细胞将上皮细胞壁推到一起形成融合板。