Russell A B, Carlson S S
Department of Physiology and Biophysics, University of Washington, Seattle, Washington 98195, USA.
J Neurosci. 1997 Jun 15;17(12):4734-43. doi: 10.1523/JNEUROSCI.17-12-04734.1997.
Neurexins are highly variable transmembrane proteins hypothesized to be nerve terminal-specific cell adhesion molecules. As a test of the hypothesis that neurexin is restricted to the nerve terminal, we examined neurexins in the electric organ of the elasmobranch electric fish. Specific antibodies generated against the intracellular domain of electric fish neurexin were used in immunocytochemical and Western blot analyses of the electromotor neurons that innervate the electric organ. Our results indicate that neurexin is not expressed at electric organ nerve terminals, as expected by the neurexin hypothesis. Instead, neurexin is expressed by electromotor neurons and on myelinated axons. This neurexin has a molecular weight of 140 kDa, consistent with an alpha-neurexin. In addition, we find that perineurial cells of the electromotor nerve also express a neurexin. These cells surround bundles of axons to form a diffusion barrier and are thought to be a special form of fibroblast. The results of the study argue against a universal role for neurexins as nerve terminal-specific proteins but suggest that neurexins are involved in axon-Schwann cell and perineurial cell interactions.
神经配素是高度可变的跨膜蛋白,被推测为神经末梢特异性细胞黏附分子。为了验证神经配素局限于神经末梢这一假说,我们研究了板鳃亚纲电鱼电器官中的神经配素。针对电鱼神经配素细胞内结构域产生的特异性抗体,用于对支配电器官的运动神经元进行免疫细胞化学和蛋白质印迹分析。我们的结果表明,神经配素并不像神经配素假说所预期的那样在电器官神经末梢表达。相反,神经配素由运动神经元和有髓轴突表达。这种神经配素分子量为140 kDa,与α-神经配素一致。此外,我们发现运动神经的神经束膜细胞也表达一种神经配素。这些细胞围绕轴突束形成扩散屏障,被认为是成纤维细胞的一种特殊形式。该研究结果反驳了神经配素作为神经末梢特异性蛋白的普遍作用,但表明神经配素参与轴突-施万细胞和神经束膜细胞的相互作用。