Department of Biological Science, Sookmyung Women's University, Chungpa-Dong 2-Ka, Yongsan-Ku, Seoul, Korea.
EMBO J. 2011 Apr 20;30(8):1593-607. doi: 10.1038/emboj.2011.44. Epub 2011 Feb 22.
Endocytosis of Eph-ephrin complexes may be an important mechanism for converting cell-cell adhesion to a repulsive interaction. Here, we show that an endocytosis-defective EphA8 mutant forms a complex with EphAs and blocks their endocytosis in cultured cells. Further, we used bacterial artificial chromosome transgenic (Tg) mice to recapitulate the anterior>posterior gradient of EphA in the superior colliculus (SC). In mice expressing the endocytosis-defective EphA8 mutant, the nasal axons were aberrantly shifted to the anterior SC. In contrast, in Tg mice expressing wild-type EphA8, the nasal axons were shifted to the posterior SC, as predicted for the enhanced repellent effect of ephrinA reverse signalling. Importantly, Rac signalling was shown to be essential for EphA-ephrinA internalization and the subsequent nasal axonal repulsion in the SC. These results indicate that endocytosis of the Eph-ephrin complex is a key mechanism by which axonal repulsion is generated for proper guidance and topographic mapping.
Eph-ephrin 复合物的内吞作用可能是将细胞-细胞黏附转化为排斥相互作用的重要机制。在这里,我们表明,一种内吞作用缺陷的 EphA8 突变体与 EphAs 形成复合物,并在培养的细胞中阻断它们的内吞作用。此外,我们使用细菌人工染色体转基因 (Tg) 小鼠来重现上丘 (SC) 中 EphA 的前-后梯度。在表达内吞作用缺陷 EphA8 突变体的小鼠中,鼻轴突异常地转移到前 SC。相比之下,在表达野生型 EphA8 的 Tg 小鼠中,鼻轴突转移到后 SC,正如 EphrinA 反向信号增强的排斥效应所预测的那样。重要的是,Rac 信号被证明对于 EphA-ephrinA 的内化以及随后在 SC 中鼻轴突的排斥反应是必不可少的。这些结果表明,Eph-ephrin 复合物的内吞作用是产生正确导向和地形映射的轴突排斥的关键机制。