首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Dissection of Complex Molecular Interactions of Neurofascin with Axonin-1 F11 and Tenascin-R Which Promote Attachment and Neurite Formation of Tectal Cells
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Dissection of Complex Molecular Interactions of Neurofascin with Axonin-1 F11 and Tenascin-R Which Promote Attachment and Neurite Formation of Tectal Cells

机译:解剖神经fascin与Axonin-1F11和腱糖蛋白R的复杂分子相互作用这促进了直肠细胞的附着和神经突的形成。

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摘要

Neurofascin is a member of the L1 subgroup of the Ig superfamily that promotes axon outgrowth by interactions with neuronal NgCAM-related cell adhesion molecule (NrCAM). We used a combination of cellular binding assays and neurite outgrowth experiments to investigate mechanisms that might modulate the interactions of neurofascin. In addition to NrCAM, we here demonstrate that neurofascin also binds to the extracellular matrix glycoprotein tenascin-R (TN-R) and to the Ig superfamily members axonin-1 and F11.Isoforms of neurofascin that are generated by alternative splicing show different preferences in ligand binding. While interactions of neurofascin with F11 are only slightly modulated, binding to axonin-1 and TN-R is strongly regulated by alternatively spliced stretches located in the NH2-terminal half, and by the proline-alanine-threonine-rich segment.In vitro neurite outgrowth and cell attachment assays on a neurofascin-Fc substrate reveal a shift of cellular receptor usage from NrCAM to axonin-1, F11, and at least one additional protein in the presence of TN-R, presumably due to competition of the neurofascin– NrCAM interaction. Thereby, F11 binds to TN-R of the neurofascin/TN-R complex, but not to neurofascin, whereas axonin-1 is not able to bind directly to the neurofascin/TN-R complex as shown by competition binding assays.In conclusion, these investigations indicate that the molecular interactions of neurofascin are regulated at different levels, including alternative splicing and by the presence of interacting proteins.
机译:Neurofascin是Ig超家族L1亚组的成员,它通过与神经元NgCAM相关的细胞粘附分子(NrCAM)相互作用来促进轴突生长。我们结合了细胞结合试验和神经突增生实验,以研究可能调节神经钙蛋白相互作用的机制。除NrCAM以外,我们在这里还证明了神经钙索蛋白还与细胞外基质糖蛋白腱糖蛋白R(TN-R)以及Ig超家族成员轴索蛋白1和F11结合。配体结合。虽然神经法索霉素与F11的相互作用仅受到轻微调节,但位于NH2末端一半的可变剪接段以及富含脯氨酸-丙氨酸-苏氨酸的片段强烈地调节了与轴突蛋白1和TN-R的结合。在神经纤维蛋白-Fc底物上进行的生长和细胞附着测定表明,在TN-R存在下,细胞受体的使用从NrCAM转变为轴突蛋白-1,F11和至少一种其他蛋白质,这可能是由于神经纤维蛋白NrCAM的竞争相互作用。因此,F11可以与神经钙蛋白/ TN-R复合物的TN-R结合,但不能与神经钙蛋白结合,而轴突蛋白1不能直接与神经钙蛋白/ TN-R复合物结合,如竞争结合试验所示。这些研究表明,神经纤维蛋白的分子相互作用受到不同水平的调节,包括选择性剪接和相互作用蛋白的存在。

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